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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 4338. Отображено 100.
04-02-2020 дата публикации

Устройство дополнительной подачи воздуха в штатную систему подачи воздуха турбированного ДВС транспортного средства

Номер: RU0000195723U1

Полезная модель относится к автомобилестроению, в частности, к устройству дополнительной подачи воздуха в штатную систему подачи воздуха турбированного двигателя внутреннего сгорания (ДВС), и позволяет реализовать подачу воздуха по двум различным схемам с обеспечением работы двигателя в режиме дополнительного наддува или в режиме подачи «динамического потока» в компрессор турбокомпрессора. Техническим результатом полезной модели является упрощение конструкции устройства, расширение функциональных возможностей устройства, повышение эксплуатационных характеристик двигателя за счет существенного повышения мощности двигателя, простота в установке. Устройство дополнительной подачи воздуха в штатную систему подачи воздуха турбированного ДВС транспортного средства содержит трубопровод для подачи воздуха, переход, в котором размещен один конец трубопровода, компрессор, интеркуллер, установленные на трубопроводе, при этом переход выполнен большего диаметра, чем трубопровод, а перед переходом на трубопроводе установлена автоматическая синхронная заслонка. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (51) МПК F02B 37/04 F02B 37/12 F02B 33/44 F02B 29/04 F02D 23/00 (11) (13) 195 723 U1 (2006.01) (2006.01) (2006.01) (2006.01) (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F02B 37/04 (2020.01); F02B 37/12 (2020.01); F02B 33/44 (2020.01); F02B 29/04 (2020.01); F02D 23/00 (2020.01) (21)(22) Заявка: 2018147526, 29.12.2018 29.12.2018 (73) Патентообладатель(и): Байдан Руслан Витальевич (RU) Дата регистрации: 04.02.2020 Приоритет(ы): (22) Дата подачи заявки: 29.12.2018 (45) Опубликовано: 04.02.2020 Бюл. № 4 1 9 5 7 2 3 R U (54) Устройство дополнительной подачи воздуха в штатную систему подачи воздуха турбированного ДВС транспортного средства (57) Реферат: Полезная модель относится к повышение эксплуатационных характеристик автомобилестроению, в частности, к устройству двигателя за счет существенного повышения дополнительной подачи воздуха ...

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04-02-2020 дата публикации

Устройство принудительной подачи воздуха в двигатель внутреннего сгорания транспортного средства

Номер: RU0000195724U1

Полезная модель относится к автомобилестроению, в частности к устройству принудительной подачи воздуха в штатную систему подачи воздуха атмосферного двигателя внутреннего сгорания (ДВС), и обеспечивает работу ДВС в режиме принудительного наддува. Техническим результатом полезной модели является упрощение конструкции устройства, расширение функциональных возможностей устройства, повышение эксплуатационных характеристик двигателя за счет существенного повышения мощности двигателя при сохранении надежности его работы, простота в установке. Устройство принудительной подачи воздуха в штатную систему подачи воздуха атмосферного ДВС транспортного средства содержит трубопровод для подачи воздуха, компрессор, интеркуллер, установленные на трубопроводе, при этом на конце трубопровода установлена синхронная заслонка. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 195 724 U1 (51) МПК F02B 29/04 (2006.01) F02B 33/44 (2006.01) F02D 23/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F02B 29/04 (2020.01); F02B 33/44 (2020.01); F02D 23/00 (2020.01) (21)(22) Заявка: 2018147536, 29.12.2018 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Байдан Руслан Витальевич (RU) Дата регистрации: 04.02.2020 Приоритет(ы): (22) Дата подачи заявки: 29.12.2018 (45) Опубликовано: 04.02.2020 Бюл. № 4 1 9 5 7 2 4 R U (54) Устройство принудительной подачи воздуха в двигатель внутреннего сгорания транспортного средства (57) Реферат: Полезная модель относится к характеристик двигателя за счет существенного автомобилестроению, в частности к устройству повышения мощности двигателя при сохранении принудительной подачи воздуха в штатную надежности его работы, простота в установке. систему подачи воздуха атмосферного двигателя Устройство принудительной подачи воздуха в внутреннего сгорания (ДВС), и обеспечивает штатную систему подачи воздуха атмосферного работу ДВС в режиме принудительного наддува. ДВС транспортного ...

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02-02-2012 дата публикации

Exhaust system

Номер: US20120023902A1
Принадлежит: Benteler Automobiltechnik GmbH

An exhaust system for a motor vehicle includes a housing having an inflow funnel defined by an expanding cross sectional area. Received in the housing is an exhaust-gas treatment device which includes a tubular guide element arranged in the inflow funnel and having a curvature with an outer side formed with at least one embossment. The embossment causes a deflection of the exhaust-gas flow and thereby increases a contact time of the exhaust-gas flow with an insert of the exhaust-gas treatment device.

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16-02-2012 дата публикации

Pressure wave supercharger

Номер: US20120037131A1
Принадлежит: Benteler Automobiltechnik GmbH

A pressure wave supercharger for installation on an internal combustion engine of a motor vehicle includes a rotor casing having an inner surface, and a rotor received in the rotor casing. A coating is applied on the inner surface of the rotor casing for absorbing heat radiation. The rotor casing is surrounded by an insulation jacket.

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16-02-2012 дата публикации

Method for feeding reducing agent into an exhaust gas system and corresponding exhaust gas system and motor vehicle

Номер: US20120039779A1
Автор: Rolf Bruck, Wolfgang Maus

A method for feeding reducing agent or reducing agent precursor into exhaust systems of mobile internal combustion engines and an exhaust system are preferably used for internal combustion engines with high nitrogen oxide compound emissions. A feed time is established. An exhaust parameter and/or necessary quantity of reducing agent is determined and a feed state of the reducing agent is defined. The reducing agent is treated if the feed state does not correspond to a stored state. The reducing agent feed to the exhaust system takes place last. The steps are repeated multiple times. This permits reducing agent to be fed into an exhaust system in a state suitable for the exhaust temperature, so that complete conversion of reducing agent takes place and selectively catalytic reduction is also ensured. This reduces the quantity of electrical energy necessary for converting reducing agent. A motor vehicle having the system is also provided.

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01-03-2012 дата публикации

Electric heating catalyst

Номер: US20120047881A1
Принадлежит: Toyota Motor Corp

The present invention is intended to suppress a decrease in insulation resistance between electrodes and a case in an electric heating catalyst (EHC). An EHC ( 1 ) according to the present invention is provided with a heat generation element ( 3 ) that is energized to generate heat thereby to heat a catalyst, a case ( 4 ) that receives the heat generation element therein, an insulating member ( 5 ) that is arranged between the heat generation element ( 3 ) and the case ( 4 ) for insulating electricity, electrodes ( 7 ) that are connected to the heat generation element ( 3 ) through an electrode chamber ( 9 ) which is a space located between an inner wall surface of the case ( 4 ) and an outer peripheral surface of the heat generation element ( 3 ), and a ventilation passage ( 10 ) that ventilates the electrode chamber.

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17-05-2012 дата публикации

Intake system of engine

Номер: US20120117964A1
Принадлежит: Hyundai Motor Co, Kia Motors Corp

An intake system of an engine may include an intake line that is configured to supply cylinder of an engine with air, an exhaust line that exhaust gas combusted in the cylinder is exhausted, a housing disposed on the intake line and a compressor is disposed therein, the compressor is operated by a turbine disposed on an exhaust line, a recirculation line that recirculates the air from the intake line of a downstream side of the compressor to the intake line of an upstream side of the compressor, and an anti surge valve disposed on the recirculation line to open/close the recirculation line, wherein a length of a first section (l) that is straight from the anti surge valve is longer than two times the outlet diameter (d) of the anti surge valve in the recirculation line that is formed from the anti surge valve to an upstream side of the compressor. A distance (L) from the intake line that is connected to the recirculation line to the inlet of the housing may be longer than times the inlet diameter (D) of the housing that the compressor is disposed therein. Accordingly, while the intake air circulates the anti surge valve during a tip-out or acceleration period, the turbulent flow may be decreased and the flowing becomes smooth such that the noise is decreased and the emotional quality may be improved in the intake system of the engine.

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19-07-2012 дата публикации

Mounting Mat with Flexible Edge Protection and Exhaust Gas Treatment Device Incorporating the Mounting Mat

Номер: US20120183449A1
Автор: Mark Beauharnois
Принадлежит: Unifrax Corp

A mounting mat for an exhaust gas treatment device includes first and second major opposite facing surfaces, leading and trailing edges, and opposite lateral edges. At least a portion of one or both of the opposite lateral edges includes an edge protectant that protects the mounting mat against erosion from hot gases encountered during the normal operation of the exhaust gas treatment device. The edge protectant remains flexible after it has been applied to the mounting mat and substantially dried. Also disclosed is an exhaust gas treatment device that includes a housing and a fragile structure mounted within the housing by the mounting mat having the edge protectant deposited thereon. Additionally disclosed are methods of making the mounting mat and an exhaust gas treatment device.

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11-10-2012 дата публикации

Piston engine

Номер: US20120255526A1
Автор: Lars Ola LIAVÅG
Принадлежит: WÄRTSILÄ FINLAND OY

The invention relates to a piston engine comprising an intake air duct ( 2 ) for conducting intake air into cylinders ( 3 ) of the engine ( 1 ). The intake air duct ( 2 ) is provided with liquid removal means ( 15 ) for removing liquid from an inner surface ( 19 ) of the intake air duct ( 2 ).

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18-10-2012 дата публикации

Supercharger intake duct

Номер: US20120260896A1
Принадлежит: Individual

An air intake duct ( 54 ) for fluid connecting between an air intake control valve unit ( 52 ) and a supercharger ( 60 ) includes a duct inlet ( 56 ) fluid connected with an outlet port ( 52 b ) of the air intake control valve ( 52 ) and oriented in a first direction (D 1 ), a duct outlet ( 58 ) fluid connected with a suction port ( 60 a ) of the supercharger ( 60 ) and oriented in a second direction (D 2 ) substantially perpendicular to the first direction (D 1 ), and a duct body ( 74 ) for defining an air intake passage ( 78 ) extending from the duct inlet ( 56 ) to the duct outlet ( 58 ). The duct body ( 74 ) has a portion confronting the duct outlet ( 58 ), which is formed with a guide projection ( 80 ) that protrudes towards the duct outlet ( 58 ).

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31-01-2013 дата публикации

Electrically-heated catalytic converter

Номер: US20130025267A1
Принадлежит: Toyota Motor Corp

An electrically-heated catalytic converter comprises a catalyst support which produces heat when electric current is applied, a holding mat made of an electrical insulating material, the holding mat being provided so as to cover an outer circumference of the catalyst support, and a case which houses the catalyst support and holds the catalyst support via the holding mat. The catalytic converter treats gas flowing in the case by a catalyst supported on the catalyst support. The holding mat has a water-absorbing property. An insulation layer made of an electrical insulating material is provided between the case and the holding mat.

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06-06-2013 дата публикации

ELECTROCHEMICAL CATALYSIS SYSTEM

Номер: US20130142702A1
Принадлежит:

The present invention relates to an electrocatalytic system for the joint treatment of oxidizing polluting entities of the NOtype and reducing polluting entities of the hydrocarbons HC or CO type present in a gas to be purified, in particular an exhaust gas resulting from a combustion engine, said system comprising: 2. The electrocatalytic system of claim 1 , wherein claim 1 , in formula (I) claim 1 , y is from 0.1 to 0.3 and z=0.3. The electrocatalytic system of claim 1 , wherein the oxide which conducts ions and electrons has formula CeOGd.4. The electrocatalytic system of claim 1 , wherein claim 1 , in formula (I) claim 1 , z is greater than 0.5. The electrocatalytic system of claim 4 , wherein the oxide which conducts ions and electrons has formula CeOYTi claim 4 , wherein y is from 0.1 to 0.3 and z is from 0.01 to 0.1.6. The electrocatalytic system of claim 1 , wherein the compound E comprises oxygen holes and wherein a portion of Ce cations of the crystal lattice is converted into Ce cations.7. The electrocatalytic system of claim 6 , wherein the proportion of Ce ions claim 6 , as given by the Ce/Ce ratio claim 6 , is between 25 and 75%.8. The electrocatalytic system of claim 1 , wherein claim 1 , in formula (I) claim 1 , x is from 0.1 to 0.4.9. The electrocatalytic system of claim 1 , wherein the oxide which conducts ions and electrons exhibits a specific surface of from 0.5 to 100 m/g.10. A structure configured to decontaminate and/or filter a gas comprising gaseous pollutants and optionally comprising solid particles claim 1 , the structure comprising a porous inorganic material comprising a coating comprising the catalytic system of .11. The structure of claim 10 , comprising a monolithic honeycomb block comprising a collection of adjacent channels with axes parallel to one another separated by walls claim 10 , the open porosity of which is greater than 30% claim 10 , wherein the channels are sealed by plugs at one or other of their ends in order to ...

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13-06-2013 дата публикации

Stored Compressed Air Management and Flow Control for Improved Engine Performance

Номер: US20130146036A1
Принадлежит: FORD GLOBAL TECHNOLOGIES, LLC

A method for providing air to a combustion chamber of an engine, the engine including a compressor and a boost tank selectably coupled to an intake manifold. The method comprises admitting air from the compressor to the intake manifold via a main throttle valve, storing some air from the compressor in a boost tank, and discharging some of the air stored in the boost tank to the intake manifold via an auxiliary throttle valve distinct from the main throttle valve. 1. A method for providing air to a combustion chamber of an engine , the engine including a compressor and a boost tank selectably coupled to an intake manifold , the method comprising:admitting air from the compressor to the intake manifold via a main throttle valve and a charge-air cooler;storing some air from the compressor in a boost tank; anddischarging some of the air stored in the boost tank to the intake manifold via an auxiliary throttle valve distinct from the main throttle valve, the main and auxiliary throttles each positioned downstream of the compressor and in parallel with one another.2. The method of claim 1 , wherein discharging some of the air stored in the boost tank comprises displacing EGR-diluted air in the intake manifold claim 1 , the EGR-diluted air including at least some low-pressure EGR (LP-EGR).3. The method of claim 2 , further comprising holding the main throttle valve open during said displacing to release the EGR-diluted air from the intake manifold.4. The method of claim 3 , further comprising closing the main throttle valve to prevent reverse air flow through the main throttle valve absent said displacing.5. The method of claim 1 , wherein discharging some of the air stored in the boost tank further comprises discharging when a throttle inlet pressure is below a threshold.6. The method of claim 1 , wherein discharging some of the stored air comprises drawing additional air into the intake manifold via an air ejector coupled between the boost tank and the intake manifold.7. ...

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18-07-2013 дата публикации

Electrically heated catalyst

Номер: US20130183205A1
Принадлежит: Toyota Motor Corp

Electricity is suppressed from flowing through a case of an electrically heated catalyst. For this purpose, the case for accommodating a heat generating element includes a tubular portion which is formed in parallel to a central axis, an inlet portion which is provided on the upstream side from the tubular portion and which has an inner diameter smaller than that of the tubular portion, an inclined portion which connects the tubular portion and the inlet portion, and an introducing portion which extends from a connected portion between the inlet portion and the inclined portion toward inside of the case and which is curved so that a center of curvature is positioned at the outside; and an inner tube interposed by a mat for supporting the heat generating element includes a tubular portion which is formed in parallel to a central axis, and an inclined portion which is provided on the upstream side from the tubular portion, which has inner diameters that are decreased on the more upstream side, and which is curved.

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24-10-2013 дата публикации

Valve Device for Controlling the Air Intake for a Compressor of a Vehicle, and Compressor System and Method for Controlling a Compressor System

Номер: US20130276764A1
Принадлежит:

A valve device controls the air intake for a compressor of a vehicle. The valve device includes a valve housing having a first compressed air inlet for connecting to an ambient air infeed, a second compressed air inlet for connecting to a charge air infeed, through which pre-compressed air can be fed, and a compressed air outlet for connecting to the compressor. The valve device includes a first switched state in which the compressed air outlet is fluidically connected to the first compressed air inlet, and a second switched state in which the compressed air outlet is fluidically connected to the second compressed air inlet. The valve device includes a switching device capable of switching the valve device between the first switched and the second switched state. 1. A valve device for controlling air intake for a compressor of a vehicle , the valve device comprising: a first compressed air inlet for connection to an ambient air feed;', 'a second compressed air inlet for connection to a charge air feed, via which precompressed air is feedable;', 'a compressed air outlet for connection to the compressor; wherein', 'the valve device has a first switched state, in which the compressed air outlet is fluidically connected to the first compressed air inlet,', 'the valve device has a second switched state, in which the compressed air outlet is fluidically connected to the second compressed air inlet, and', 'the valve device further comprises a switching device, configured to switch the valve device between the first switched state and the second switched state., 'a valve housing, the valve housing comprising2. The valve device as claimed in claim 1 , wherein the switching device is configured such that a fluid line between the second compressed air inlet and the compressed air outlet is closed in the first switched state and a fluid line between the first compressed air inlet and the compressed air outlet is closed in the second switched state.3. The valve device as claimed ...

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07-11-2013 дата публикации

Pressure Exchanger and Performance Adjustment Method of Pressure Exchanger

Номер: US20130294944A1
Принадлежит: KUBOTA CORPORATION

A pressure exchanger includes a rotator disposed with pressure transmission sections around a rotation axis, each pressure transmission section being so formed that a first flow path and a second flow path are communicated with each other; a first lateral member formed with first fluid inflow paths guiding the first fluid to the first flow paths, second fluid outflow paths guiding, from the second flow paths, second fluid obtained after pressure exchange with the first fluid, second fluid inflow paths guiding the second fluid to the second flow paths, and first fluid outflow paths guiding, from the first flow paths, first fluid obtained after pressure exchange with the second fluid in the thickness direction; and a second lateral member rotatably sandwiching the rotator between the second lateral member and the first lateral member. 114-. (canceled)15. A pressure exchanger for exchanging pressure between first fluid and second fluid , the pressure exchanger comprising:a rotator having, around a rotation axis, a pressure transmission section provided such that a first flow path into or out of which the first fluid flows from a first end is communicated with a second flow path into or out of which the second fluid flows from the first end;a first lateral member provided, in a thickness direction, with a first fluid inflow path for guiding the first fluid to the first flow path, a second fluid outflow path for guiding the second fluid after pressure exchange with the first fluid from the second flow path, a second fluid inflow path for guiding the second fluid to the second flow path, and a first fluid outflow path for guiding the first fluid after pressure exchange with the second fluid from the first flow path; anda second lateral member rotatably sandwiching the rotator between the first lateral member and the second lateral member, with a retentive member being interposed therebetween.16. The pressure exchanger according to claim 15 , wherein the rotator is ...

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14-11-2013 дата публикации

Coaxial Flow Injector

Номер: US20130299604A1
Принадлежит:

An injector for injecting a reagent includes an axially translatable valve member positioned within a housing. An electromagnet is positioned within the housing and includes a coil of wire positioned proximate the valve member such that the valve member moves between a seated position and an unseated position relative to an orifice in response to energizing the electromagnet. A connector coupled to the housing includes an inlet tube concentrically aligned with and surrounding a return tube. The inlet tube is adapted to receive pressurized reagent from a source of reagent. The return tube is adapted to return reagent to the source. 1. An injector for injecting a reagent , comprising:a housing;an axially translatable valve member positioned within the housing;an electromagnet positioned within the housing and including a coil of wire positioned proximate the valve member, wherein the valve member moves between a seated position and an unseated position relative to an orifice in response to energizing the electromagnet; anda connector coupled to the housing, the connector including an inlet tube concentrically aligned with and surrounding a return tube, the inlet tube being adapted to receive pressurized reagent from a source of reagent, the return tube being adapted to return reagent to the source.2. The injector of claim 1 , wherein the connector includes a plurality of webs interconnecting the inlet tube and the return tube.3. The injector of claim 2 , wherein the webs are positioned inside of the inlet tube and radially extend between the inlet and return tubes.4. The injector of claim 3 , wherein portions of the inlet and return tubes extend perpendicular to an axis about which the valve member translates.5. The injector of claim 1 , wherein reagent simultaneously flows in a first direction through the inlet tube and in a second opposite direction through the return tube when the valve member is in the seated position.6. The injector of claim 1 , further including ...

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28-11-2013 дата публикации

HIGH PRESSURE HYDROGEN GAS COMPRESSOR

Номер: US20130315818A1
Автор: Roy Amitava
Принадлежит:

A gas compressor comprises a source of high pressure fluid and a pressure vessel having a gas inlet for the gas to be compressed, a gas outlet for the compressed gas and a fluid inlet for the high pressure fluid. The compressor is arranged to introduce the high pressure fluid into the pressure vessel via the fluid inlet whereby to compress a volume of gas in the pressure vessel. 1. A gas compressor comprising:a source of high pressure liquid; anda pressure vessel having a gas inlet for a gas to be compressed, a gas outlet for the compressed gas and a fluid inlet for the high pressure liquid,wherein the compressor is arranged to introduce the high pressure liquid into the pressure vessel via the fluid inlet whereby to compress a volume of gas in the pressure vessel, andwherein the fluid inlet of the pressure vessel comprises a s nozzle for spraying the high pressure liquid into the pressure vessel.26-. (canceled)71. A gas compressor as claimed in , wherein the high pressure fluid is water.8. A gas compressor as claimed in claim 1 , wherein the source of high pressure liquid comprises a pump arranged to pump liquid to the fluid inlet of the pressure vessel.9. A gas compressor as claimed in claim 8 , wherein the source of high pressure liquid comprises a tank and the pump is arranged to pump liquid from the tank to the fluid inlet of the pressure vessel.10. A gas compressor as claimed in claim 8 , comprising at least one further pressure vessel having a gas inlet and a fluid inlet for the high pressure liquid claim 8 ,wherein the pump is arranged to pump liquid from the first pressure vessel to the fluid inlet of the further pressure vessel whereby to compress a volume of gas in the further pressure vessel, andwherein the pump is arranged subsequently to pump liquid from the further pressure vessel to the fluid inlet of the first pressure vessel whereby to compress a volume of gas in the first pressure vessel.11. A gas compressor as claimed in claim 10 , wherein the ...

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05-12-2013 дата публикации

Clamping means and method of use thereof

Номер: US20130318750A1
Автор: Neil Dobson
Принадлежит: Teconnex Ltd

Clamping means are provided which include a substantially annular outer clamping member having two substantially opposite free ends and engagement means provided on or associated with said two opposite free ends to allow the diameter of the outer clamping member and/or distance between the two free ends to be adjusted and/or maintained in a required position in use. The clamping means includes at least one substantially annular inner clamping member that is located substantially within the annular outer clamping member.

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05-12-2013 дата публикации

Integrated intake manifold and compressor

Номер: US20130319380A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

An induction system for an internal combustion engine having at least one cylinder includes a centrifugal compressor configured to pressurize an airflow being received from the ambient. The induction system also includes an intake manifold configured to channel the pressurized airflow to the at least one cylinder. The centrifugal compressor is disposed within and integral to the intake manifold. An internal combustion engine employing such an induction system is also disclosed.

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19-12-2013 дата публикации

Split pressure vessel for two flow processing

Номер: US20130334223A1
Автор: Leif J. Hauge
Принадлежит: Leif J. Hauge

A split pressure vessel for processing of two flows encountered with energy exchange devices, consisting of two opposite facing end caps 1, 2 having each a side port for low pressure 3, 5 and one axial port 4, 6 preferably in the same plane as the side ports. Each end cap has internal structurally integrated manifolds for high pressure 17, 22 and low pressure manifold 19, 24 connect-circulation pump or booster 26 having a submersible or external motor.

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13-02-2014 дата публикации

Hydrocarbon trap having improved adsorption capacity

Номер: US20140044625A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A hydrocarbon trap is provided for reducing cold-start hydrocarbon emissions. The trap is formed by extruding from about 60 to 80% by weight zeolite and from about 20 to 40% by weight of a binder to form an extruded zeolite monolith. A three-way catalyst and an oxygen storage capacity material may also be included in the trap. The hydrocarbon trap contains from about 5.0 to 8.0 g/in. 3 zeolite, which provides increased hydrocarbon retention. The hydrocarbon trap may be positioned in the exhaust gas passage of a vehicle such that hydrocarbons are adsorbed on the trap and stored until the monolith reaches a sufficient temperature for catalyst activation.

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13-03-2014 дата публикации

CONTROL DEVICE OF INTERNAL COMBUSTION ENGINE

Номер: US20140069396A1
Автор: Iemura Akiyuki
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

The invention relates to a controlled object () for variably controlling a control amount relating to the engine and an actuator for changing the operation state of the controlled object. 16.-. (canceled)8. The device of claim 7 , wherein the engine comprises:a supercharger having a compressor arranged in an intake passage for compressing a gas supplied to the combustion chamber and an exhaust turbine arranged in an exhaust passage and connected to the compressor; andan exhaust gas recirculation device for introducing to the intake passage, an exhaust gas discharged from the combustion chamber to the exhaust passage,the supercharger has vanes for variably controlling the flow rate of the exhaust gas passing through the exhaust turbine by changing the operation state of the vanes and a vane actuator for changing the operation state of the vanes, andthe exhaust gas recirculation device has an exhaust gas recirculation control valve for variably controlling the amount of the exhaust gas introduced to the intake passage by changing the operation state of the valve and an exhaust gas recirculation control valve actuator for changing the operation state of the exhaust gas recirculation control valve,wherein the first controlled object is the vane, the first controlled object actuator is the vane actuator, the second controlled object is the exhaust recirculation control valve and the second controlled object actuator is the exhaust gas recirculation control valve actuator,wherein the first target operation state determination means determines the target operation state of the vane,the first controlled object actuator control means determines a control signal to be given to the vane actuator for feedback controlling the driving state of the vane actuator to accomplish the target operation state determined by the first target operation state determination means and gives the determined control signal to the vane actuator,the second target operation state determination means ...

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20-03-2014 дата публикации

APPARATUS FOR REDUCING PUMPING LOSS AND ENGINE INCLUDING THE SAME

Номер: US20140076276A1
Автор: PARK Sung Yup
Принадлежит: HYUNDAI MOTOR COMPANY

An apparatus for reducing a pumping loss may include an auxiliary runner formed in an air-intake unit supplying air to a cylinder, wherein intake air may be temporarily stored in the auxiliary runner by using a flow of an exhaust gas during an exhaust stroke, and the intake air stored in the auxiliary runner may be supplied to the cylinder together with the air introduced to the air-intake unit during an intake stroke. 1. An apparatus for reducing a pumping loss , the apparatus comprising:an auxiliary runner formed in an air-intake unit supplying air to a cylinder of an engine,wherein intake air is temporarily stored in the auxiliary runner by a negative pressure incurred from a flow of an exhaust gas in an exhaust port during an exhaust stroke, and the intake air stored in the auxiliary runner is supplied to the cylinder together with the air introduced to the air-intake unit during an intake stroke,wherein the engine is a two-cylinder engine in which respective cylinders simultaneously reciprocate in a same direction, respectively.2. The apparatus for reducing the pumping loss of claim 1 , further including:a venturi tube fluid-connecting the auxiliary runner to an expel unit expelling the exhaust gas outside of the cylinder.3. The apparatus for reducing the pumping loss of claim 2 , further including:an auxiliary piston slidably provided in the auxiliary runner; andan elastic member disposed in the auxiliary runner and elastically supporting the auxiliary piston,wherein the intake air is temporarily stored in the auxiliary runner by moving the auxiliary piston overcoming an elastic force of the elastic member by using negative pressure applied in the venturi tube.4. The apparatus for reducing the pumping loss of claim 1 , further including:an auxiliary piston slidably provided in the auxiliary runner; andan elastic member elastically supporting the auxiliary piston,wherein the intake air is temporarily stored in the auxiliary runner by moving the auxiliary piston ...

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03-04-2014 дата публикации

ELECTRIC SUPERCHARGER, ASSEMBLING METHOD OF THE SAME, AND INTERNAL COMBUSTION ENGINE

Номер: US20140090626A1
Принадлежит: MITSUBISHI HEAVY INDUSTRIES, LTD.

It is intended to implement an electric supercharger that has a simplified architecture, is easy to assemble, produces reduced vibration and noise, and has a motor inverter, making it possible to minimize losses in motor output and rotary-shaft output. The electric supercharger is provided with the following: an integrated housing with a built-in electric motor and motor inverter; and a ball bearing and damper-sleeve structure arranged on both sides of the electric motor. The damper-sleeve structure comprises a large-diameter sleeve, a spring guide, a coil spring, and a ball bearing. A gap is formed between the ball bearings and a sleeve and the large-diameter sleeve. The inner ring or outer ring of the ball bearings are supported by various support members disposed on both sides. An elastic O-ring that elastically supports the sleeve and large-diameter sleeve is provided on the outside of the sleeves. 1. An electric supercharger comprising:a compressor wheel housed in a compressor housing;an electric motor for driving a rotation shaft of the compressor wheel;a motor inverter for controlling rotation speed of the rotation shaft, the motor inverter being arranged adjacent to the electric motor in series on the rotation shaft;a rolling bearing provided on each side of the electric motor to rotatably support the rotation shaft;a sleeve provided outside the rolling bearing and forming a gap between the sleeve and the rolling bearing;a supporting portion clamping an outer ring or inner ring of the rolling bearing from both sides to support the rolling bearing; anda damper mechanism arranged outside the sleeve to elastically support the sleeve.2. The electric supercharger according to claim 1 ,wherein the rolling bearing comprises a grease enclosed rolling bearing.3. The electric supercharger according to claim 1 ,wherein the damper mechanism comprises a damper member having elasticity, the damper member being provided in a gap between the sleeve and an inner surface of a ...

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05-01-2017 дата публикации

MULTI-STAGE ELECTRIC CENTRIFUGAL COMPRESSOR AND SUPERCHARGING SYSTEM FOR INTERNAL COMBUSTION ENGINE

Номер: US20170002727A1
Принадлежит: MITSUBISHI HEAVY INDUSTRIES, LTD.

An object is to provide a multi-stage electric centrifugal compressor and a supercharging system for an internal combustion engine with a driving unit of a rotational shaft that can be readily controlled when a single-shaft and two-stage centrifugal compressor is employed. A multi-stage electric centrifugal compressor includes: an electric motor; and a pair of centrifugal compressors coupled to either side of the electric motor, the pair of centrifugal compressors comprising a low-pressure stage compressor and a high-pressure stage compressor connected in series. The low-pressure stage compressor and the high-pressure stage compressor are formed to have different pressure ratios from each other. 16-. (canceled)7. A multi-stage electric centrifugal compressor for pressurizing intake air to be supplied to an internal combustion engine , comprising:an electric motor; anda pair of centrifugal compressors coupled to either side of the electric motor, the pair of centrifugal compressors comprising a low-pressure stage compressor and a high-pressure stage compressor connected in series,wherein the low-pressure stage compressor and the high-pressure stage compressor are formed to have different pressure ratios from each other, andwherein the multi-stage electric centrifugal compressor further comprisesa map defining a relationship of a rotation speed of the electric motor to a discharge pressure or a discharge flow rate of the multi-stage electric centrifugal compressor;a matching unit configured to match the map with an intake pressure or an intake flow rate required for the multi-stage centrifugal compressor by an engine controller configured to control operation of an internal combustion engine to derive a required rotation speed of the electric motor; anda motor controller configured to control the rotation speed of the electric motor to achieve the required rotation speed derived by the matching unit.8. The multi-stage electric centrifugal compressor according to claim ...

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05-01-2017 дата публикации

Supercharging Arrangement

Номер: US20170002729A1
Автор: BURTT David
Принадлежит: Torotrak (Development) LTD

A supercharging arrangement for an internal combustion engine is disclosed. The supercharging arrangement has a supercharger having a rotational drive input. A transmission having a rotational drive input receives drive from an internal combustion engine, and a transmits drive to a rotational drive output connected to the input of the supercharger. 1. A supercharging arrangement for an internal combustion engine comprising:a supercharger having a rotational drive input;a transmission having a rotational drive input to receive drive from an internal combustion engine, and a rotational drive output connected to the input of the supercharger;the transmission including a continuously variable transmission operatively connected between the input and the output of the transmission,wherein the supercharger comprises first and second compressors connected in series within an air path.2. (canceled)3. (canceled)4. (canceled)5. (canceled)6. (canceled)7. A supercharging arrangement according to wherein at least one of the first and the second compressors is a dynamic compressor.8. A supercharging arrangement according to wherein both of the first and the second compressors are dynamic compressors.9. A supercharging arrangement according to wherein both of the first and the second compressors are centrifugal compressors.10. A supercharging arrangement according to claim 9 , wherein each compressor comprises an impeller which tapers radially outwardly from a relatively small inlet side to a relatively large outlet side claim 9 , wherein the outlet sides of the impellers of the first and second compressors are disposed adjacent one another in a back-to-back configuration claim 9 , and an outer casing of the compressors is configured to provide appropriate inlet and outlet fluid flow paths to the compressors.11. A supercharging arrangement according to wherein the second compressor is physically smaller than the first compressor.12. A supercharging arrangement according to wherein ...

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05-01-2017 дата публикации

INTERNAL COMBUSTION ENGINE

Номер: US20170002773A1
Автор: SEGAWA Taku
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

The internal combustion engine includes a compressor for supercharging intake air, an EGR device for introducing EGR gas into an intake passage at a position on an upstream side relative to the compressor, and a collecting pocket that is provided at an outer circumference of a compressor inlet and that collects condensed water generated inside the intake passage on an upstream side relative to the compressor. The collecting pocket opens towards the upstream side of the compressor, and is formed in a circular ring shape that surrounds the outer circumference of the compressor inlet. The collecting pocket includes a partition wall that holds back a flow of condensed water that attempts to move in a downward gravitational direction inside an internal space of the collecting pocket. 1. An internal combustion engine , comprising:a compressor for supercharging intake air;an EGR device for introducing EGR gas into an intake passage on an upstream side relative to the compressor; anda collecting pocket that is provided at an outer circumference of an inlet of the compressor, and that collects condensed water that is generated inside the intake passage on the upstream side relative to the compressor;wherein:the collecting pocket opens towards the upstream side of the compressor, and is formed in a ring shape that surrounds the outer circumference of the inlet of the compressor;the collecting pocket includes at least one partition wall that holds back a flow of condensed water that attempts to move in a downward gravitational direction inside an internal space of the collecting pocket; andan inner wall of the intake passage that is positioned directly above a flow of intake air to the collecting pocket covers a portion of the collecting pocket in a radial direction of the inlet of the compressor.2. (canceled)3. The internal combustion engine according to claim 1 , wherein claim 1 , in a circumferential wall surface that becomes a downward side in a gravitational direction ...

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07-01-2016 дата публикации

SYSTEM FOR SUPERCHARGING THE INTAKE GASES AND FOR RECIRCULATING THE EXHAUST GASES OF AN ENGINE AND ASSOCIATED CONTROL METHOD

Номер: US20160003134A1
Принадлежит: VALEO SYSTEMES DE CONTROLE MOTEUR

The invention concerns a system () for supercharging the intake gases and for recirculating the exhaust gases of an engine (), comprising: a supercharging circuit () comprising a turbocharger () to be driven by the exhaust gases from at least a first cylinder () of the engine (); a recirculating circuit () for the exhaust gases from at least a second cylinder (); and an exhaust gas-orienting device () winch is connected to the two circuits ( and ) and is intended to be connected to an exhaust line () of the engine () so as to control an amount of exhaust gas placed in communication between the supercharging circuit (), the recirculating circuit () and the exhaust line () of the engine (). 1. A system for supercharging the intake gases and recirculating the exhaust gases of an engine , said system comprising:a supercharging circuit comprising a turbocharger to be driven by the exhaust gases from at least a first cylinder of the engine;a recirculating circuit for the exhaust gases from at least one second cylinder; andan exhaust gas-orienting device that is connected to the two circuits and is able to be connected to an exhaust line of the engine so as to control an amount of exhaust gas placed into communication between the supercharging circuit, the recirculating circuit and the exhaust line of the engine.2. The system according to claim 1 , wherein the gas-orienting circuit is connected to the supercharging circuit at a discharge duct of the turbocharger.3. The system according to claim 1 , wherein the exhaust gas-orienting device comprises:an exhaust gas recirculation valve comprising: a body defining a primary duct designed to be connected to both the outlet of the at least one second cylinder, and to a gas recirculation duct, an auxiliary duct emerging in said primary duct, and means for orienting exhaust gases toward the outlet of the primary duct designed to be connected to said gas recirculation duct and/or toward the auxiliary duct;a discharge valve ...

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04-01-2018 дата публикации

Venting System For A Bearing Housing Thermal Dam Of A Turbocharger

Номер: US20180003104A1
Автор: Race Robert Thomas
Принадлежит: BORGWARNER INC.

A venting system for a turbocharger may include a bearing housing. The bearing housing may include an inner member. A housing wall may extend from the inner member and may include at least one vent disposed therethrough. A partition may be sealed to the housing wall and the inner member. The partition, the housing wall, and the inner member may collectively form a thermal dam. 1. A venting system for a turbocharger , comprising:a bearing housing including an inner member;a housing wall extending from the inner member, the housing wall including at least one vent disposed therethrough; anda partition sealed to the housing wall and the inner member, the partition, the housing wall, and the inner member collectively forming a thermal dam.2. The venting system of claim 1 , further including an actuator disposed through the housing wall.3. The venting system of claim 2 , wherein the actuator is disposed through the housing wall at a location that is diametrically opposed from the at least one vent.4. The venting system of claim 3 , wherein the actuator is in communication with a processor configured to selectively regulate and supply air into the thermal dam.5. The venting system of claim 1 , wherein the partition further includes a face including an inner edge disposed therethrough claim 1 , an annular wall extending axially from an outer diameter of the face claim 1 , and flange extending radially outwardly from the annular wall.6. The venting system of claim 5 , wherein the inner edge is sealed to the inner member and the flange is sealed to a shoulder rim of the housing wall.7. A turbocharger claim 5 , comprising:a turbine housing;a compressor housing including a diffuser;a bearing housing disposed between the turbine housing and the compressor housing, the bearing housing including a housing wall and an inner member, the housing wall extending from the inner member at an intersection and terminating at a shoulder rim, the shoulder rim spaced radially outwardly from ...

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04-01-2018 дата публикации

COMPRESSOR STAGE EGR INJECTION

Номер: US20180003133A1
Принадлежит:

A product may include a bearing housing in which a shaft may be supported by a bearing so that it may rotate. A compressor wheel may be disposed on the shaft. A compressor cover may be connected with the bearing housing, which may form a compressor body and may define a chamber within which the compressor wheel may rotate. A diffuser may extend radially outward from the chamber and may receive gas from the compressor wheel. An inlet may be provided to the compressor body, which may receive a supply of exhaust gas. An EGR distribution cavity may be defined within the compressor body and may extend around the shaft. An EGR inlet channel may extend into the bearing housing from the inlet to the EGR distribution cavity. An EGR passage may extend from the EGR distribution cavity to the diffuser. 1. A product comprising a bearing housing in which a shaft is supported by a bearing to rotate , a compressor wheel disposed on the shaft , a compressor cover connected with the bearing housing creating a compressor body defining a chamber within which the compressor wheel rotates , a diffuser extending radially outward from the chamber and receiving gas from the compressor wheel , an inlet on the compressor body receiving a supply of exhaust gas , an EGR distribution cavity defined completely within the compressor body and extending around the shaft , an EGR inlet channel extending into the bearing housing from the inlet to the EGR distribution cavity , and an EGR passage extending from the EGR distribution cavity to the diffuser.2. The product according to wherein the shaft rotates on an axis and the EGR inlet channel extends in a direction toward the axis.3. The product according to wherein the EGR distribution cavity extends in a circle around the shaft and at any point along the circle has a consistent cross section.4. The product according to wherein the compressor wheel includes a compressor wheel tip at its radially outermost perimeter claim 1 , and wherein the bearing ...

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02-01-2020 дата публикации

EXHAUST AFTERTREATMENT SYSTEM FOR AN ENGINE

Номер: US20200003103A1
Принадлежит:

An exhaust aftertreatment system for an engine operating within a range of stoichiometric and sub-stoichiometric air-fuel ratios (0.92<λ≤1) includes an exhaust passageway, and a first catalytic module that has an inlet disposed in fluid communication with the exhaust passageway for receiving exhaust from the exhaust passageway. The exhaust aftertreatment system also includes a first device for introducing an oxidant into the exhaust of the first catalytic module, and a second device for mixing the introduced oxidant with the exhaust of the first catalytic module. The exhaust aftertreatment system also includes a second catalytic module concentric with the first catalytic module such that heat transfer is facilitated between the first and second catalytic modules while exhaust is prevented from flowing radially between the first and second catalytic modules, and a means for diverting the exhaust from an outlet of the first catalytic module to an inlet of the second catalytic module. 1. An exhaust aftertreatment system for an engine operating within a range of stoichiometric and sub-stoichiometric air-fuel ratios (0.92<λ≤1) , the exhaust aftertreatment system comprising:an exhaust passageway;a first catalytic module having an inlet disposed in fluid communication with the exhaust passageway for receiving exhaust from the exhaust passageway;a first device for introducing an oxidant into the exhaust of the first catalytic module;a second device for mixing the introduced oxidant with the exhaust of the first catalytic module;a second catalytic module concentric with the first catalytic module such that heat transfer is facilitated between the first and second catalytic modules while exhaust is prevented from flowing radially between the first and second catalytic modules; anda housing positioned between the first catalytic module and the second catalytic module for diverting the exhaust from an outlet of the first catalytic module to an inlet of the second catalytic ...

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03-01-2019 дата публикации

COMPRESSOR WHEEL AND FLUID COMPRESSION DEVICE COMPRISING THE SAME

Номер: US20190003483A1
Принадлежит:

A compressor wheel of a fluid compression device includes a wheel part, a shaft part and a plurality of connection parts. The wheel part includes a main body formed with a through hole, and a plurality of blades protruded from an outer side of the main body. The shaft part is accommodated in the through hole and configured to connect to a rotor shaft. The plurality of connection parts is connected between an inner side of the main body and the shaft part. Wherein, a fluid passage is formed between the inner side of the main body and the shaft part to allow fluid to flow to a rear side of the compressor wheel from a front side of the compressor wheel via the fluid passage. 1. A compressor wheel of a fluid compression device , comprising: a main body formed with a through hole; and', 'a plurality of blades protruded from an outer side of the main body;, 'a wheel part, comprisinga shaft part accommodated in the through hole, the shaft part being configured to connect to a rotor shaft; anda plurality of connection parts connected between an inner side of the main body and the shaft part;wherein a fluid passage is formed between the inner side of the main body and the shaft part to allow fluid to flow to a rear side of the compressor wheel from a front side of the compressor wheel via the fluid passage.2. The compressor wheel of claim 1 , wherein each of the connection parts is blade-shaped and configured to guide the fluid to the rear side of the compressor wheel from the front side of the compressor wheel via the fluid passage when the compressor wheel rotates.3. The compressor wheel of claim 1 , wherein the plurality of connection parts is radially arranged between the inner side of the main body and the shaft part.4. The compressor wheel of claim 1 , wherein the plurality of blades is configured to guide the fluid to a lateral side of the compressor wheel from the front side of the compressor wheel when the compressor wheel rotates.5. The compressor wheel of claim 1 ...

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12-01-2017 дата публикации

SUPERCHARGER SYSTEM FOR MOTORZIED VEHICLES AND RELATED TRANSPORTATION

Номер: US20170009643A1
Автор: Magana Chad, Simons Robert
Принадлежит:

A supercharger system is disclosed herein having a front end, a rear end, an inlet and an outlet, the system contained within a housing, wherein the supercharger system includes a rotor assembly, and a plurality of intake runners that comprise an interlaced cross-runner pattern, wherein the supercharger system comprises a front drive, front inlet configuration and an inverted orientation. 1. A supercharger system contained within a housing , the supercharger system having a front end , a rear end , an inlet and an outlet and comprising:a rotor assembly; andthe supercharger system in an inverted orientation having a plurality of intake runners, the plurality of intake runners comprising an interlaced cross-runner pattern, and wherein the supercharger system comprises a front drive, front inlet configuration.2. An engine of a motorized vehicle claim 1 , having a supercharger system of installed therein.3. The engine of claim 2 , wherein the engine comprises an intake manifold having a housing and a crankshaft.4. The engine of claim 3 , wherein the supercharger system housing is integrated with the intake manifold housing.5. The engine of claim 3 , wherein the outlet of the supercharger system points upward and away from the crankshaft.6. The supercharger system of claim 1 , wherein the rotor assembly is located in and installed from the rear end of the housing.7. The supercharger system of claim 1 , wherein the rotor assembly comprises at least two rotors.8. The supercharger system of claim 7 , wherein each rotor comprises at least two lobes.9. The supercharger system of claim 8 , wherein each rotor comprises at least four lobes.10. The supercharger system of claim 8 , wherein each lobe comprises at least 60 twist.11. The supercharger system of claim 10 , wherein each lobe comprises at least 160 twist.12. The supercharger system of claim 1 , wherein the system further comprises an integrated bypass valve claim 1 , an electric throttle body claim 1 , an intercooler ...

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12-01-2017 дата публикации

MOMENT-CANCELLING 4-STROKE ENGINE SYSTEMS

Номер: US20170009649A1
Автор: Gurney Daniel Sexton
Принадлежит:

A moment-cancelling, four-stroke engine is disclosed. The engine includes a first cylinder having a first piston and a second cylinder having a second piston, a first crankshaft operably connected to the first piston and a second crankshaft operably connected to the second piston. The first crankshaft rotates in a first direction and the second crankshaft rotates in a second direction that is opposite the first direction to cancel the moments applied to the engine and reduce engine vibration. 1. An internal combustion engine , comprising:a first cylinder having a first piston;a second cylinder having a second piston;a first crankshaft operably connected to the first piston;a second crankshaft operably connected to the second piston;a cylinder head comprising at least one intake port and at least one exhaust port per cylinder, said at least one intake port connected to the first cylinder such that fluid can pass through the at least one intake port into the first cylinder and said at least one exhaust port connected to the first cylinder such that fluid can pass from the first cylinder through the at least one exhaust port;a movable intake valve positioned at least partially within the at least one intake port configured to control the flow of fluid through the at least one intake port, the at least one intake port having a minimum intake port diameter;a movable exhaust valve positioned at least partially within the at least one exhaust port configured to control the flow of fluid through the at least one exhaust port;a first fuel injector configured to provide gaseous or liquid fuel directly to the first cylinder;a second fuel injector configured to provide gaseous or liquid fuel directly to the second cylinder;wherein the first crankshaft rotates in a first direction and the second crankshaft rotates in a second direction such that the second direction is an opposite direction from the first direction.2. The engine of claim 1 , wherein the engine is water-cooled.3. ...

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12-01-2017 дата публикации

FLOATING BUSH BEARING DEVICE AND TURBOCHARGER PROVIDED WITH THE BEARING DEVICE

Номер: US20170009810A1
Принадлежит: MITSUBISHI HEAVY INDUSTRIES, LTD.

An object is to provide a floating bush bearing device including a circumferential groove over the entire circumference of an outer peripheral surface of a floating bush while ensuring that a pressing force is applied by lubricant oil to the floating bush to reduce oscillation, as well as a turbocharger provided with the bearing device. A floating bush bearing device includes: a rotary shaft disposed rotatably inside a bearing hole of a casing; a floating bush surrounding the rotary shaft; an oil-feed hole of lubricant oil having an opening on an inner peripheral surface of the bearing hole; a plurality of communication holes formed on the floating bush, each extending between an inner peripheral surface and an outer peripheral surface of the floating bush, and disposed at intervals in a circumferential direction of the floating bush; and a circumferential groove formed on the outer peripheral surface of the floating bush or the inner peripheral surface of the bearing hole and extending over an entire circumference of the outer peripheral surface of the floating bush or the inner peripheral surface of the bearing hole, the circumferential groove passing through openings of the plurality of communication holes or facing the openings of the plurality of communication holes. The circumferential groove has a cross-sectional area which varies in accordance with a circumferential position. 1. A floating bush bearing device , comprising:a casing including a bearing hole;a rotary shaft disposed rotatably inside the bearing hole;a floating bush disposed rotatably inside the bearing hole and surrounding the rotary shaft;an oil-feed hole of lubricant oil, the oil-feed hole having an opening on an inner peripheral surface of the bearing hole;a plurality of communication holes formed on the floating bush, each of the communication holes extending between an inner peripheral surface and an outer peripheral surface of the floating bush, and disposed at intervals in a ...

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14-01-2016 дата публикации

POSITION SENSOR PLACEMENT FOR ELECTRICALLY ASSISTED TURBOCHARGER

Номер: US20160010492A1
Автор: Cavagnaro Augustine
Принадлежит:

An electrically assisted turbocharger () includes an electric motor () having a rotor () and a stator (). The rotor () rotates in response to operation of the turbocharger () and the stator () is fixed relative to the rotor (). A component () rotates in unison with the rotor () and includes a plurality of features (). To control timing of phase excitation of the electric motor (), a position sensor () is mounted to the turbocharger () to detect the plurality of features ( ) on the rotating component () to determine a rotational position of the rotor (). 110. An electrically assisted turbocharger () comprising:{'b': 72', '10, 'a rotor () rotating in response to operation of said turbocharger ();'}{'b': 74', '72, 'a stator () fixed relative to said rotor ();'}{'b': 40', '48', '24', '72', '40', '48', '24', '80', '84', '86', '90, 'a component (, , ) rotating in unison with said rotor (), said component (, , ) including a plurality of features (, , , ); and'}{'b': 82', '10', '80', '84', '86', '90', '40', '48', '24', '72, 'a position sensor () mounted to said turbocharger () for detecting said plurality of features (, , , ) on said component (, , ) during rotation thereof to determine a rotational position of said rotor ().'}210. An electrically assisted turbocharger () comprising:{'b': 22', '10, 'a shaft () rotating in response to operation of said turbocharger ();'}{'b': 72', '22, 'a rotor () fixed to said shaft () for rotation therewith;'}{'b': 74', '72, 'a stator () fixed relative to said rotor ();'}{'b': 40', '48', '24', '22', '40', '48', '24', '80', '84', '86', '90, 'a component (, , ) fixed to said shaft () for rotation therewith, said component (, , ) including a plurality of features (, , , ); and'}{'b': 82', '10', '80', '84', '86', '90', '40', '48', '24', '40', '48', '24', '72, 'a position sensor () mounted to said turbocharger () for detecting said plurality of features (, , , ) on said component (, , ) during rotation of said component (, , ) to determine a ...

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14-01-2016 дата публикации

Assembly Tool for Exhaust Turbochargers

Номер: US20160010504A1
Принадлежит:

A lifting apparatus for assembly of exhaust turbocharger allows the removal of the rotor block from the housing in a horizontal direction. The lifting apparatus includes a cantilever, which is fastened on a vertical stop, i.e. on an axial end, of the housing, and on which there is arranged a structure which can be moved along the cantilever and which is likewise fastened on a vertical stop, i.e. an axial end of the rotor block. 1. A lifting apparatus for moving a rotor block , which is arranged in a housing of an exhaust turbocharger , along the axis of rotation of the rotor contained in the rotor block , wherein the lifting apparatus has a cantilever , which is provided for fastening on a vertical stop of the housing surrounding the rotor block , whereinthe cantilever comprises a supporting frame with rails arranged thereon and a carriage guided on the rails, wherein the mounting devices for fastening a structure that can be fastened on a vertical stop of the rotor block are arranged on the carriage, allowing the structure to be moved with the aid of the carriage along the rails arranged on the supporting frame of the cantilever.2. The lifting apparatus as claimed in claim 1 , wherein the carriage is connected to a spindle nut claim 1 , which is arranged on a threaded rod claim 1 , making it possible to move the spindle nut and thus the carriage along the threaded rod by rotating the threaded rod claim 1 , wherein a spindle wheel is preferably provided for rotating the threaded rod.3. The lifting apparatus as claimed in claim 2 , wherein a connection with play in the direction of the threaded rod is provided between the spindle nut and the carriage claim 2 , allowing the carriage to be moved along the threaded rod relative to the spindle nut within the range of the play claim 2 , even when the threaded rod is not being rotated.4. The lifting apparatus as claimed in claim 1 , wherein the structure comprises at least two vertically spaced fastening points for ...

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14-01-2016 дата публикации

FORCED INDUCTION DEVICE FOR A COMBUSTION ENGINE, COMBUSTION ENGINE AND METHOD FOR OPERATING A COMBUSTION ENGINE

Номер: US20160010539A1
Автор: Verdoorn Werner
Принадлежит:

Exhaust gas from a first outlet port () of a cylinder () of a combustion engine () can flow through the first turbocharger (), and exhaust gas from a second outlet port () of the cylinder () can flow through the second turbocharger (). A first connecting duct () can supply the second turbine () with exhaust gas from the first turbine (). The first connecting duct () is connected to a first bypass duct () that issues into a tailpipe line () downstream of the second turbine () to bypass the second turbine (). The first bypass duct () has a second control valve () that can block the first bypass duct (). The first connecting duct () has a first control valve () that can block the first connecting duct () to prevent exhaust gas from flowing through the first turbine () to the second turbine (). 1. A forced induction device for a combustion engine , comprising: first and second exhaust turbochargers , exhaust gas emerging from a first outlet port of a cylinder of the combustion engine flowing through the first exhaust turbocharger , and exhaust gas emerging from a second outlet port of the cylinder flowing through the second exhaust turbocharger , a first connecting duct downstream of a first turbine of the first turbocharger and upstream of a second turbine of the second exhaust turbocharger for supplying the second turbine with exhaust gas from the first turbine , the first connecting duct being connected to a first bypass duct at a first branch , the first bypass duct issuing at a first entry into a tailpipe line downstream of the second turbine to bypass the second turbine , the first bypass duct having a second control valve for blocking or opening the first bypass duct , and the first connecting duct having a first control valve that can block or open the first connecting duct to prevent exhaust gas from flowing through the first turbine to the second turbine.2. The forced induction device of claim 1 , further comprising an intake pipe that can be connected to the ...

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14-01-2016 дата публикации

EXHAUST-GAS TURBOCHARGER

Номер: US20160010542A1
Автор: Metz Dietmar
Принадлежит: BORGWARNER INC.

An exhaust-gas turbocharger () having a turbine () which has a turbine wheel () surrounded by an inflow duct (), and having a VTG cartridge (), which VTG cartridge has a disk () and a vane bearing ring (), which delimit the inflow duct (), and which VTG cartridge has a multiplicity of vanes () which are arranged in the inflow duct () and which are mounted in the vane bearing ring () by way of rotatable vane shafts (), which vane shafts are connected to vane levers (), the lever heads () of which engage into associated grooves () in an adjusting ring () which surrounds the vane bearing ring () on the outside. At least one min-flow stop () has, on an outer surface (), a laser-cut portion (). 11. An exhaust-gas turbocharger () having{'b': '2', 'claim-text': {'b': 3', '4, 'which has a turbine wheel () surrounded by an inflow duct (), and'}, 'a turbine ()'}{'b': '5', 'claim-text': {'b': 8', '4', '7', '9', '10', '11', '12', '13', '7, 'which VTG cartridge has a multiplicity of vanes () which are arranged in the inflow duct () and which are mounted in the vane bearing ring () by way of rotatable vane shafts (), which vane shafts are connected to vane levers (), the lever heads () of which engage into associated grooves () in an adjusting ring () which surrounds the vane bearing ring () on the outside;'}, 'a VTG cartridge (),'}{'b': 25', '26', '31', '32, 'wherein at least one min-flow stop (, ) has, on an outer surface (), a laser-cut portion ().'}225263231. The exhaust-gas turbocharger as claimed in claim 1 , wherein the min-flow stop ( claim 1 , ) is a round stop bolt claim 1 , and wherein the laser-cut portion () is a planar surface region on the round outer surface ().329302526132728. The exhaust-gas turbocharger as claimed in claim 1 , wherein cutouts ( claim 1 , ) claim 1 , which come into contact with the min-flow stop ( claim 1 , ) claim 1 , of the adjusting ring () have parallel stop edges ( claim 1 , ).4137. The exhaust-gas turbocharger as claimed in claim 1 , ...

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14-01-2016 дата публикации

Method for Checking the Leak Tightness of a Combustion Engine Having an Exhaust Gas Turbocharger, and Exhaust Gas Turbocharger

Номер: US20160011070A1
Принадлежит:

An exhaust gas turbocharger includes a housing having an exhaust gas inlet and an exhaust gas outlet. The exhaust gas turbocharger also has a turbine wheel rotatably mounted in the housing. The exhaust gas turbocharger includes a shut-off device that can adopt both an open and a closed state, a fluid connection existing in the open state and allowing exhaust gas which enters via the exhaust gas inlet to flow to the exhaust gas outlet, bypassing the turbine wheel. When the housing is supplied with compressed air, the exhaust gas turbocharger is at least substantially airtight. 1. A method for testing leak-tightness of an internal combustion engine before initial commencement of operation , the internal combustion engine being equipped with an exhaust-gas turbocharger , the method comprising the acts of:sealing off an exhaust tract of the internal combustion engine at a location upstream of the exhaust-gas turbocharger;sealing off a housing of the exhaust-gas turbocharger at an actuation device of a shut-off device of the exhaust-gas turbocharger such that no air can escape from the housing into surroundings of the actuation device;generating a positive pressure in the exhaust-gas turbocharger; andcomparing an occurring pressure loss or leakage volume flow with a predefined pressure loss or leakage volume flow.2. The method according to claim 1 , wherein the predefined pressure loss or the leakage volume flow defines an acceptable amount of pressure loss or leakage volume flow for the leak-tightness of the internal combustion engine.3. An exhaust-gas turbocharger claim 1 , comprising:a housing having an exhaust-gas inlet and an exhaust-gas outlet;a turbine wheel mounted rotatably in the housing; anda shut-off device configured to adopt both an open and a closed state, wherein in the open state a fluid connection exists via which exhaust gas passing from the exhaust-gas inlet can flow to the exhaust-gas outlet while bypassing the turbine wheel; andwherein the exhaust- ...

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14-01-2021 дата публикации

OIL SUPPLY SYSTEM FOR INTEGRATED TURBOCHARGER

Номер: US20210010412A1
Принадлежит:

A cylinder head assembly for an internal combustion engine includes a cast cylinder head having at least one oil gallery, a turbocharger housing integrally cast with the cylinder head, and a turbocharger cartridge assembly configured to be inserted into the turbocharger housing and including at least one bearing rotatably supporting a shaft coupled between a compressor wheel and a turbine wheel. A lubricant supply system having a lubricant passage formed within the turbocharger housing is configured to supply oil from the at least one oil gallery to the turbocharger cartridge assembly to lubricate the at least one bearing. 1. A cylinder head assembly for an internal combustion engine , the assembly comprising:a cast cylinder head having at least one oil gallery;a turbocharger housing integrally cast with the cylinder head;a turbocharger cartridge assembly configured to be inserted into the turbocharger housing and including at least one bearing rotatably supporting a shaft coupled between a compressor wheel and a turbine wheel; anda lubricant supply system having a lubricant passage formed within the turbocharger housing and configured to supply oil from the at least one oil gallery to the turbocharger cartridge assembly to lubricate the at least one bearing.2. The cylinder head assembly of claim 1 , wherein the lubricant supply system does not include tubing external to the cast cylinder head and integrally cast turbocharger housing.3. The cylinder head assembly of claim 1 , wherein the lubricant supply system further includes a lubricant supply port extending from the lubricant passage to an oil outlet configured to supply oil to the turbocharger cartridge assembly.4. The cylinder head assembly of claim 3 , wherein the oil outlet is formed within an inlet flange of the turbocharger housing.5. The cylinder head assembly of claim 4 , further comprising:a recess formed in the inlet flange about the oil outlet; anda seal disposed within the recess and configured to ...

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14-01-2021 дата публикации

Fluid exchange devices and related systems, and methods

Номер: US20210010489A1
Принадлежит: Flowserve Management Co

Devices and systems for exchanging properties between at least two fluid streams and related methods may include a valve device comprising a valve actuator configured to move at variable rates in order to selectively fill and empty at least one tank. Devices for exchanging properties between at least two fluid streams may include a valve device comprising offset openings positioned along a path of a valve actuator. The offset openings may be configured to selectively and gradually place an inlet in communication with at least one tank.

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09-01-2020 дата публикации

System and method for the use of pressure exchange in hydraulic fracturing

Номер: US20200011165A1
Принадлежит: Nextier Completion Solutions Inc

A pressure exchange system for use in hydraulic fracturing includes a closed-loop clean fluid circuit; an energizing system comprising a first pump; a high-pressure clean manifold system; a pressure exchange system; a low-pressure supply system; and a high-pressure dirty manifold system. The closed-loop clean fluid circuit delivers clean fluid to the energizing system, and the energizing system energizes the clean fluid to supply pressurized clean fluid. The high-pressure clean manifold system delivers the pressurized clean fluid to the pressure exchange system. Meanwhile, the low-pressure supply system delivers a low-pressure dirty stream to the pressure exchange system. The pressure exchange system transfers the energy from the pressurized clean fluid to the low-pressure dirty stream thereby supplying a pressurized dirty-stream, whereby the high-pressure dirty manifold system delivers the pressurized dirty-stream to a well-head.

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09-01-2020 дата публикации

METHOD FOR OPERATING AN INTERNAL COMBUSTION ENGINE AND THE INTERNAL COMBUSTION ENGINE

Номер: US20200011232A1
Принадлежит: VOLKSWAGEN AKTIENGESELLSCHAFT

A method for operating an internal combustion engine is provided, wherein the internal combustion engine has at least one combustion engine and a fresh gas line and wherein a compressor, to which a trim adjuster is assigned, is integrated into the fresh gas line, said trim adjuster by which an edge section of the inlet cross section of a compressor wheel can be covered to a variable extent. In this case, the edge section of the inlet cross section is covered relatively little in a release position of the trim adjuster and covered relatively greatly in a covering position of the trim adjuster. It is provided that the trim adjuster is adjusted between the release position and the covering position, when substantially the same compressor pressure ratio and substantially the same fresh gas mass flow and substantially the same compressor efficiency are achieved in both operating positions. 1. A method for operating an internal combustion engine comprising an engine and a fresh gas line , the method comprising:integrating a compressor into the fresh gas line; andassigning the compressor to a trim adjuster via which an edge section of the inlet cross section of a wheel of the compressor is adapted to be covered to a variable extent, wherein an edge section of the inlet cross section is covered relatively little in a release position of the trim adjuster and is covered relatively greatly in a covering position of the trim adjuster; andadjusting the trim adjuster between the release position and the covering position, when substantially a same compressor pressure ratio and substantially a fresh gas mass flow and substantially a same compressor efficiency are achieved in both operating positions.2. The method according to claim 1 , wherein the trim adjuster covers the edge section of the inlet cross section as little as possible in the release position and/or covers it as much as possible in the covering position.3. The method according to claim 1 , wherein the compressor ...

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09-01-2020 дата публикации

ELECTRIC SUPERCHARGER

Номер: US20200011233A1
Автор: OSHITA Makio
Принадлежит: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI

An electric supercharger includes a rotary shaft, a motor, a motor housing, a sealing plate, an impeller, a rolling bearing, and an oil injection portion. The rotary shaft extends in an axial direction thereof. The motor rotationally drives the rotary shaft. The motor housing accommodates the motor and has an opening. The sealing plate seals the opening. The impeller is fixed to the rotary shaft. The rolling bearing is disposed in the sealing plate or adjacent thereto. The oil injection portion injects lubrication oil to the rolling bearing. In the sealing plate, an oil discharge space is formed adjacent to the rolling bearing and a deflector portion protruded radially inward is formed over at least in part in a circumferential direction of the rotary shaft. 1. An electric supercharger comprising:a rotary shaft extending in an axial direction of the rotary shaft;a motor rotationally driving the rotary shaft;a motor housing accommodating the motor and having on a first end side thereof in the axial direction of the rotary shaft an opening for putting in and out the motor;a sealing plate sealing the opening;an impeller fixed to the rotary shaft at a position closer to the first end side than the sealing plate is to the first end side;a rolling bearing disposed in the sealing plate or adjacent to the sealing plate on a second end side in the axial direction of the rotary shaft, the rolling bearing being configured to rotatably support the rotary shaft; andan oil injection portion injecting lubrication oil to the rolling bearing from the second end side in the axial direction of the rotary shaft and away from the rolling bearing, whereinan oil discharge space is formed adjacent to the rolling bearing on the first end side and communicated with a space between an outer ring and an inner ring of the rolling bearing in the sealing plate, anda deflector portion protruded radially inward is formed at a position away on the first end side from the rolling bearing across the ...

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19-01-2017 дата публикации

VARIABLE TURBINE OR COMPRESSOR GEOMETRY FOR AN EXHAUST GAS TURBOCHARGER

Номер: US20170016343A1
Автор: Lummer Dirk, Naunheim Dirk
Принадлежит:

A variable turbine and/or compressor geometry for an exhaust gas turbocharger may include an adjusting ring for simultaneously adjusting a plurality of guide vanes. The adjusting ring may be operatively connected to an articulated lever via a first contact surface and to an associated adjusting lever of the plurality of guide vanes via a second contact surface. The adjusting ring may include, at least in a region of the first contact surface, an additional component which is pressed into the adjusting ring and which increases the first contact surface operatively connected with the articulated lever. 1. A variable turbine and/or compressor geometry for an exhaust gas turbocharger , comprising:an adjusting ring for simultaneously adjusting a plurality of guide vanes, wherein the adjusting ring is in operative connection with an articulated lever via a first contact surface and with an associated adjusting lever of the plurality of guide vanes via a second contact surface,wherein the adjusting ring includes, at least in a region of the first contact surface, an additional component which is pressed into the adjusting ring and which increases the first contact surface in operative connection with the articulated lever.2. The variable turbine and/or compressor geometry according to claim 1 , wherein the adjusting ring further includes claim 1 , in a region of the second contact surface claim 1 , another additional component which is pressed into the adjusting ring and which increases the second contact surface in operative connection with the associated adjusting lever.3. The variable turbine and/or compressor geometry according to claim 1 , wherein the additional component is configured as a metal-powder injection-moulded part.4. The variable turbine and/or compressor geometry according to claim 1 , wherein the additional component includes at least one bulge that facilitates a play-free press fit with the adjusting ring.5. The variable turbine and/or compressor ...

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19-01-2017 дата публикации

TURBOCHARGER ARRANGEMENT HAVING COMPRESSOR WHEELS ARRANGED IN PARALLEL AND A METHOD FOR OPERATING A TURBOCHARGER ARRANGEMENT

Номер: US20170016385A1
Принадлежит:

Methods and systems are provided for a turbocharger of an engine. In one example, a method may include balancing a pressure differential between compressor wheels of the turbocharger. 1. A turbocharger arrangement comprising:an internal combustion engine, having at least two compressor wheels, which run on a common drive axle and discharge air in parallel into a common outlet duct, wherein an inlet duct routed separately in at least one section ahead of the turbocharger arrangement is provided for each compressor wheel, 'a flow connecting duct between the inlet ducts is provided close to the compressor wheels.', 'wherein'}2. The turbocharger arrangement of claim 1 , wherein the flow connecting duct opens into the respective inlet ducts in adjacent to the compressor wheels.3. The turbocharger arrangement of claim 1 , wherein the flow connecting duct is implemented by means of at least one opening claim 1 , which is introduced into housing parts separating the inlet ducts from one another.4. The turbocharger arrangement of claim 1 , wherein two compressor wheels are provided claim 1 , which are arranged back-to-back claim 1 , wherein both compressor wheels have substantially similar delivery characteristics.5. The turbocharger arrangement of claim 4 , wherein the flow duct between the inlet ducts is routed around an outlet duct extending toroidally around the compressor wheels.6. The turbocharger arrangement of claim 5 , wherein a crankcase breather duct of the internal combustion engine additionally opens into the flow duct connecting the inlet ducts claim 5 , with the result that air is discharged from the crankcase into the inlet ducts ahead of the turbocharger arrangement.720. The turbocharger arrangement of claim 1 , wherein the flow duct connecting the inlet ducts has a cross-sectional area of no more than % of the average cross-sectional area of the inlet ducts.8. The turbocharger arrangement of claim 1 , wherein the flow connection opens into the respective ...

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21-01-2016 дата публикации

CENTRIFUGAL COMPRESSOR

Номер: US20160017791A1
Автор: NAKAO Hidefumi
Принадлежит:

A centrifugal compressor having a casing that houses an impeller allowing rotation about a rotational axis C, a gas channel, a treatment hollow part provided inside the casing, a first channel open to the gas channel on the downstream side of the blade leading edge of the impeller, a second channel open to the gas channel at the upstream side of the blade leading edge, a guide vane that imparts a swirl component in an opposite rotational direction of the impeller to gas discharged from the second channel, a constricting part that constricts the gas channel, and a rectifying part that rectifies gas in a direction that minimizes the swirl component about the rotational axis C and also increases the component in the direction of the rotational axis C.

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18-01-2018 дата публикации

GDCI INTAKE AIR TEMPERATURE CONTROL SYSTEM AND METHOD

Номер: US20180016967A1
Автор: Moore Wayne R.
Принадлежит:

A GDCI engine control system provides rapid heating of intake air to the combustion chamber when the engine is cold. The engine uses an intake air pathway that includes a compressor having a compressor inlet and a compressor outlet. A loop fluidly connects the compressor outlet to the compressor inlet. First and second valves are arranged in the loop and are arranged near the compressor outlet and the compressor inlet respectively. First and second passages converge at a first junction, and the first passage fluidly connects the first valve and the first junction. The second passage fluidly connects to the loop at a second junction arranged fluidly between the first and second valves. An intake air heat exchanger is arranged in the first passage and fluidly between the first valve and the first junction. 1. An engine control system comprising:an intake manifold configured to supply intake air to a combustion chamber;a sensor configured to detect a temperature associated with the intake air;a compressor includes a compressor inlet and a compressor outlet;an intake air heat exchanger fluidly arranged between the compressor outlet and the intake manifold;a recirculation passage fluidly interconnect the compressor outlet to the compressor inlet;a heat exchanger bypass passage fluidly interconnects the recirculation passage to the intake manifold and bypasses the intake air heat exchanger;a charge air bypass valve arranged downstream from the compressor outlet and configured to regulate the flow of fluid from the compressor outlet to intake air heat exchanger and through the recirculation and heat exchanger bypass passages;a compressor bypass valve arranged in the recirculation passage and configured to regulate the flow of air therethrough; anda controller is in communication with the sensor and the charge air and compressor bypass valves, the controller is configured to provide a first command to the charge air bypass valve and a second command to the compressor bypass ...

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18-01-2018 дата публикации

MODULAR COMPLEX FOR PRODUCTION OF EFFECTIVE POWER THROUGH COMBUSTION OF LIQUID AND GASEOUS FUELS

Номер: US20180016980A1
Автор: Kolev Nikola
Принадлежит:

The modular complex for production of effective power through combustion of liquid and gaseous fuels comprises two modules: Module for production of heat in a single combustion chamber for burning various liquid and gaseous fuel types, connected to the inlet of gas turbocharger for production of energy carrier (compressed air) with flow rate and pressure required for production of planned power and frequency of rotation; Module for transformation of carrier energy into effective power with mechanical system of variable volumes and distribution system for charging and discharging of air, comprising distribution plate with straight shaft with slots to connect compressed air from cylinder filling channels through the motion of crankgear pistons from top to bottom dead center and the channels for discharging of cylinders through the motion of pistons from bottom to top dead center, whereas low pressure and temperature values eliminate the necessity for cooling system, fuel injection system, gas distribution system and starters. The final result represents increment of effective efficiency of modular complex to over 60 percent, elimination of complicated systems, reduction of fuel consumption, materials and labor costs as well as toxic oxides and noise levels. 1123231141314315. Combustion of liquid and gaseous fuels and transformation of combustion energy into energy carrier (compressed air) with flow rate , pressure and temperature , takes place in a module for production of heat through combustion of liquid and gaseous fuels in combustion chamber () , the latter connected to the inlet of gas turbine () with one or more stages for transformation of heat into shaft torque , to which are fixed one or more impellers of the centrifugal compressor () (turbocharger set) for transformation of turbine () energy into energy carrier (compressed air) by compressor () with flow rate , pressure and temperature for production of effective power with design frequency of rotation of ...

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17-04-2014 дата публикации

TURBOCHARGING APPARATUSES AND VEHICLES USING THE SAME

Номер: US20140102425A1
Автор: Huang Jinlin

There is provided a turbocharging apparatus and vehicles using the same. The turbocharging apparatus comprises a wind collecting device, a first turbine and a second turbine. The wind collecting device comprises a first opening and a second opening and an air flow channel for connecting the two openings. A cross-sectional area of the air flow channel decreases as the air flow channel extends from the first opening towards the second opening. The first turbine comprises a first turbine housing, a first impeller rotatably located in the first turbine housing, a wind inlet communicated with the second opening, and a wind outlet. The second turbine comprises a second turbine housing, a second impeller rotatably located in the second turbine housing, an air suction inlet and an air outlet communicated with a throttle valve of the internal combustion engine. The second impeller can, driven by the first impeller, rotate along with the first impeller. The turbocharging apparatus according to the present invention relies on normal-temperature gas flow as a motive power source, substantially reduces production costs and maintenance costs, and meanwhile better ensures stability, high efficiency and durability of the turbocharger. 1. A turbo charging apparatus , characterized in that it comprises:a wind collecting device which is barrel-shaped and comprises a first opening and a second opening located at opposite ends of the wind collecting device respectively, and an air flow channel configured to connect the first opening and the second opening and guide an air flow to flow therethrough, the air flow channel having a cross-sectional area decreasing as the air flow channel extending from the first opening towards the second opening,a first turbine comprising:a first turbine housing,a first impeller rotatably located in the first turbine housing,a wind inlet formed on the first turbine housing and connected to the second opening of the wind collecting device to guide the air ...

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28-01-2016 дата публикации

SYSTEM AND METHOD FOR GAS/LIQUID MIXING IN AN EXHAUST AFTERTREATMENT SYSTEM

Номер: US20160024985A1
Принадлежит:

An exhaust treatment system for an internal combustion engine having improved mixing of an injected fluid comprises an exhaust gas conduit configured to receive exhaust gas from an internal combustion engine and to deliver the exhaust gas to the exhaust treatment system. A fluid injector in fluid communication with the exhaust gas conduit configured delivers a fluid into the exhaust gas and an evaporation volume disposed in the exhaust conduit downstream of the fluid injector is configured to slow the bulk velocity of the fluid and exhaust gas mixture to thereby increase the residence time of the exhaust gas mixture therein. An exhaust treatment device is configured to receive the fluid and exhaust gas mixture. 1. An exhaust gas treatment system for an internal combustion engine having improved mixing of an injected fluid comprising:an exhaust gas conduit configured to receive exhaust gas from an internal combustion engine and to deliver the exhaust gas to the exhaust gas treatment system;a fluid injector in fluid communication with the exhaust gas conduit configured to deliver a fluid into the exhaust gas;a breakup mixer disposed in the exhaust conduit downstream of the fluid injector and configured to breakup fluid droplets;an evaporation volume disposed in the exhaust conduit downstream of the breakup mixer and configured to slow the bulk velocity of the fluid and exhaust gas mixture to thereby increase the residence time of the exhaust gas mixture therein;a distribution mixer disposed in the exhaust conduit downstream of the evaporation volume and configured to homogenize and distribute the fluid and exhaust gas mixture; andan exhaust treatment device configured to receive the fluid and exhaust gas mixture.2. The exhaust gas treatment system of claim 1 , wherein the fluid injector is configured to develop high penetration and atomization of the injected fluid into the exhaust gas at the fluid injection location.3. The exhaust gas treatment system of claim 1 , ...

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28-01-2016 дата публикации

HIGH PERFORMANCE TURBO-HYDRAULIC COMPRESSOR

Номер: US20160024997A1
Принадлежит:

Use of the hydraulically driven device in a series configuration with a minimally restrictive turbocharger is defined which will allow a very responsive and powerful boosting system to reach boost levels of 4-5 pressure ratio (PR) to support and enable OEM engine downsizing trends. An electric supercharger is also considered. A hydraulic drive assists to increase the acceleration rate of a turbocharger impeller/turbine shaft assembly and provide a secondary means of driving the compressor impeller at lower engine speeds where exhaust gases alone does not generate adequate shaft speeds to create significant induction boost. The hydraulic circuit includes a dual displacement motor, which provides high torque for acceleration yet converts to a single motor for high-speed operation. When the exhaust driven turbine function allows compressor speeds, beyond which the hydraulic system can contribute, a slip clutch allows disengagement of the hydraulic drive. In an alternative embodiment, the hydraulic drive provides means of forced induction air alone. 1. An automotive forced air induction system operative to boost inlet air pressure of an internal combustion engine comprising:a centrifugal compressor operative to compress engine inlet air;a hydraulic drive system for powering said system air compressing device;at least two positive displacement motors coupled to jointly drive the input shaft of said compressor; andat least one unidirectional clutch located between a motor output and the compressor allowing other motors to drive compressor overrunning said motor.2. A motor vehicle equipped with a forced air induction system operative to boost inlet air pressure of an internal combustion engine comprising:a vehicle powertrain controller equipped with means to control operative state of said forced air induction system;a vehicle brake pedal position sensor;a driver controlled engine throttle or equivalent; anda control algorithm within said powertrain controller to initiate ...

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28-01-2016 дата публикации

A COMPACT ROTARY WASTEGATE VALVE

Номер: US20160024998A1
Принадлежит: BORGWARNER INC.

A turbocharger includes a turbine section and a compressor section. The turbine section includes a turbine housing () that surrounds a turbine wheel (). The turbine housing () defines an exhaust gas inlet (), a duct () that extends between the inlet () and the turbine wheel (), and a wastegate opening () in the duct (). A, butterfly-type wastegate valve () including a valve plate () and a rotatable shaft () is disposed in the opening () and rotates between an open position and a closed position. A spring () is attached to the shaft () to bias () the shaft () toward rotation about a longitudinal axis in a first direction; wherein pressure of a gas flowing in the exhaust duct () against the valve plate () causes a rotary motion of the valve plate () and rotatable shaft () against the spring bias in a second direction. 1. A turbocharger comprising ,{'b': 1', '15', '1', '2', '6', '2', '15', '5', '6, 'a turbine section including a turbine housing () that surrounds a turbine wheel (), the turbine housing () defining an exhaust gas inlet (), a duct () that extends between the inlet () and the turbine wheel (), and an opening () in the duct (),'}{'b': 3', '5', '3, 'claim-text': [{'b': 11', '14, 'a rotatable shaft () including a longitudinal axis (),'}, {'b': 10', '11, 'a valve plate () secured to the shaft () along a non-diameter chord of the valve plate; and'}, {'b': 4', '11', '4', '4', '14', '6', '10', '10', '11, 'a spring () attached to the rotatable shaft () in a manner such that the spring () biases the shaft () toward rotation about the longitudinal axis () in a first direction; wherein pressure of a gas flowing in the exhaust duct () against the valve plate () causes a rotary motion of the valve plate () and rotatable shaft () against the spring bias in a second direction opposite the first direction.'}], 'an actuator-free, exhaust gas pressure-actuated, butterfly valve () disposed in the opening () and rotatable between an open position and a closed position, the ...

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28-01-2016 дата публикации

ASYMMETRIC DOUBLE-ENTRY TURBINE

Номер: US20160025044A1
Принадлежит:

An asymmetric double-entry turbine is provided with a turbine housing that includes a first volute, a second volute and a turbine receiving bore. The first volute has a first exhaust gas inlet and a first exhaust gas outlet. The second volute has a second exhaust gas inlet and a second exhaust gas outlet. The turbine receiving bore is in fluid communication with the first exhaust gas outlet and the second exhaust gas outlet for conducting a flow of exhaust gas from the first exhaust gas outlet and the second exhaust gas outlet out in an axial direction. The first exhaust gas outlet has an angular opening amount of more than 180 degrees around the turbine receiving bore. The second exhaust gas outlet has an angular opening amount of less than 180 degrees around the turbine receiving bore. 1. An asymmetric double-entry turbine housing comprising:a first volute having a first exhaust gas inlet and a first exhaust gas outlet;a second volute having a second exhaust gas inlet and a second exhaust gas outlet; anda turbine receiving bore in fluid communication with the first exhaust gas outlet and the second exhaust gas outlet for conducting a flow of exhaust gas from the first exhaust gas outlet and the second exhaust gas outlet out in an axial direction, the first exhaust gas outlet having an angular opening amount of approximately 200 degrees around the turbine receiving bore, and the second exhaust gas outlet having an angular opening amount of approximately 160 degrees around the turbine receiving bore.2. The asymmetric double-entry turbine housing according to claim 1 , whereinthe second volute is disposed radially inward of the first volute with respect to a radial direction of the turbine receiving bore.3. The asymmetric double-entry turbine housing according to claim 1 , whereinthe first volute has a cross sectional area at its upstream end of the first exhaust gas outlet that is greater than a cross sectional area of the second volute at its upstream end of the ...

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26-01-2017 дата публикации

Low Pressure Atomizing Injector

Номер: US20170022867A1
Автор: Qi Baohua
Принадлежит:

An injector for delivering a working fluid into a working environment is disclosed. According to one embodiment of the present invention, the injector includes a pre-metering chamber with a control valve controlling fluid delivery rate and a swirl chamber, in which a swirling flow is created and atomization is achieved at low injector pressure when it is released. In another embodiment, the injector includes a swirl chamber and an atomization element with a bore, through which a control valve is positioned. The control valve forces a working fluid flow through the atomization element when the injector is energized to create a metered swirling flow. To avoid issues with deteriorated working fluid, a purging apparatus is used for emptying working fluid residue in the injector, and a special control method is used when the injector works in a high-temperature working environment. 1. An apparatus for delivering a working fluid into a working environment , comprising:a reservoir holding said working fluid; andan atomizing injector fluidly coupled to said reservoir including: an upper injector body having an fluid inlet, a first fluid exit nozzle, and a needle valve movably disposed in between said fluid inlet and said first fluid exit nozzle, allowing a flow of said working fluid through said first fluid exit nozzle at a opening position and blocking said flow of said working fluid at a closed position, and a lower injector body in connection with said upper injector body having a second fluid exit nozzle in contact with said working environment, wherein said lower injector body has an atomization element positioned therein with a bottom end, a side portion, and a upper end, creating a swirl chamber in said lower injector body in between said bottom end of said atomization element and said second fluid exit nozzle, and a pre-atomization chamber in between said first fluid exit nozzle and said upper end of said atomization element.2. The apparatus of claim 1 , wherein ...

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26-01-2017 дата публикации

STRUCTURE AND METHOD FOR JOINING NOZZLE VANE AND LEVER, AND VARIABLE GEOMETRY TURBOCHARGER

Номер: US20170022891A1
Принадлежит: MITSUBISHI HEAVY INDUSTRIES, LTD.

An object is to provide a structure and a method of joining a nozzle vane and a lever, and a variable geometry turbocharger, capable of reducing breakage of a welded part between a shaft portion of the nozzle vane and the lever during usage of the same by reducing generation of a hot crack in weld metal at the welded part. A joint structure includes: a nozzle vane disposed in an exhaust passage for guiding exhaust gas to a turbine wheel of a variable geometry turbocharger , and including a shaft portion ; and a lever including a fitting surface fitted with a peripheral surface on one end side of the shaft portion, for transmitting torque to the shaft portion to adjust a vane angle of the nozzle vane. Weld metal at a welded part between the lever and the nozzle vane is formed so that a center position of the weld metal is disposed inside a position of the fitting surface with respect to a radial direction of the shaft portion. 1. A joint structure of a nozzle vane and a lever , comprising:a nozzle vane to be disposed in an exhaust passage for guiding exhaust gas to a turbine wheel of a variable geometry turbocharger, the nozzle vane including a shaft portion; anda lever including a fitting surface to be fitted with a peripheral surface on one end side of the shaft portion, for transmitting torque to the shaft portion to adjust a vane angle of the nozzle vane,wherein the lever and the one end side of the shaft portion are joined to each other by welding, andwherein weld metal at a welded part between the lever and the one end side of the shaft portion is formed so that a center position of the weld metal is disposed inside a position of the fitting surface with respect to a radial direction of the shaft portion.2. The joint structure of a nozzle vane and a lever claim 1 , according to claim 1 ,wherein the weld metal is formed inside the fitting surface with respect to the radial direction of the shaft portion.3. The joint structure of a nozzle vane and a lever claim 1 ...

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26-01-2017 дата публикации

METHOD FOR STARTING AN ENGINE

Номер: US20170022954A1
Принадлежит:

Methods and systems are provided for reliable starting an engine during cold start. In one example, a method may include in response to an engine start request, warming up an intake manifold by compressing intake air via an electric supercharger, and adjusting an intake manifold pressure before starting a first combustion of the engine. 1. A method for an engine , comprising:in response to an engine start request,operating a supercharger to warm up an intake manifold; andadjusting an intake manifold pressure before starting a first combustion of the engine.2. The method of claim 1 , wherein adjusting intake manifold pressure includes bypassing the supercharger.3. The method of claim 2 , wherein the supercharger is bypassed by increasing an opening of a valve coupled between an output and an input of the supercharger.4. The method of claim 3 , wherein the supercharger is stopped before opening the valve.5. The method of claim 1 , wherein the intake manifold pressure is adjusted after operating the supercharger for a pre-determined time period.6. The method of claim 1 , wherein the intake manifold pressure is adjusted when the intake manifold temperature reaches a pre-determined threshold.7. The method of claim 1 , wherein the intake manifold pressure is adjusted when the intake manifold pressure reaches a pre-determined threshold.8. The method of claim 1 , wherein adjusting intake manifold pressure includes operating the supercharger in a reverse direction to reduce the intake manifold charge pressure.9. The method of claim 1 , wherein the first combustion of the engine is started when the intake manifold pressure reaches a target level.10. The method of claim 9 , wherein the target level is atmospheric pressure.11. The method of claim 9 , wherein the target level is determined based on engine operating conditions.12. The method of claim 1 , further comprising adjusting engine operating parameters based on intake manifold temperature before starting the first ...

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02-02-2017 дата публикации

CONTROL DEVICE OF AN ENGINE

Номер: US20170030260A1
Автор: Nishio Takafumi
Принадлежит:

To improve the controllability of the feedback control of the boost pressure, an ECU comprises a valve control part that feedback controls a boost pressure of a turbocharger based on a deviation between a target boost pressure and an actual boost pressure, and a determination part that determines whether or not the exhaust state in an exhaust passage can achieve the target boost pressure, and the feedback control includes at least an integral term, and when the determination part determines the exhaust state cannot achieve the target boost pressure, the valve control part reduces the influence of the deviation on the calculation of integral term compared with that when the exhaust state can achieve the target boost pressure. 1. A control system of an engine , the system comprising:a turbocharger having a turbine that is provided to an exhaust passage and a compressor that is provided to an intake passage,a turbine bypass passage for diverting exhaust around the turbine, anda wastegate valve that is provided to the turbine bypass passage for controlling a flow rate of the exhaust flowing in the turbine bypass passage, a control part for feedback controlling a boost pressure of the turbocharger based on a deviation between a target boost pressure and an actual boost pressure, and', 'a determination part for determining whether or not the exhaust state in the exhaust passage can achieve the target boost pressure,, 'a control device includingwherein the feedback control includes at least an integral term, and when the determination part determines that the exhaust state cannot achieve the target boost pressure, the control part controls an opening degree of the wastegate valve so as to reduce the influence of the deviation on the calculation of the integral term compared to that when the exhaust state can achieve the target boost pressure.2. The control system of the engine according to claim 1 ,wherein the control part calculates the integral term from an integrated ...

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02-02-2017 дата публикации

SUPERCHARGING DEVICE FOR A COMBUSTION ENGINE

Номер: US20170030365A1
Автор: SCHERI Alessio
Принадлежит:

A supercharging device (), having: a housing () which has a longitudinal axis (L); at least one housing inlet () which leads into the housing (); at least one housing outlet () which leads out of the housing (); at least one compressor wheel () which is arranged in a compressor chamber () and which is driven by a motor shaft () and which is arranged between the housing inlet () and the housing outlet () of the housing () as viewed in the flow direction, and at least one bypass duct () which is integrated in the housing () and which connects the housing inlet () to the housing outlet () so as to bypass the compressor chamber (). The bypass duct () has a self-adjusting valve (). The housing inlet () and the housing outlet () are formed as an axial inlet and an axial outlet respectively. 120. A supercharging device () , having{'b': '21', 'a housing () which has a longitudinal axis (L);'}{'b': 1', '21, 'at least one housing inlet () which leads into the housing ();'}{'b': 2', '21, 'at least one housing outlet () which leads out of the housing ();'}{'b': 5', '15', '16', '1', '2', '21, 'at least one compressor wheel () which is arranged in a compressor chamber () and which is driven by a motor shaft () and which is arranged between the housing inlet () and the housing outlet () of the housing () as viewed in the flow direction, and'}{'b': 17', '21', '1', '2', '15', '17', '22, 'at least one bypass duct () which is integrated in the housing () and which connects the housing inlet () to the housing outlet () so as to bypass the compressor chamber (), the bypass duct () having a valve (), wherein'}{'b': 1', '2, 'the housing inlet () and the housing outlet () are formed as an axial inlet and an axial outlet respectively.'}222811. The supercharging device as claimed in claim 1 , wherein the valve () has a valve body () which is guided movably along the longitudinal axis (L) and which is preloaded into a closed position by a spring ().38191821. The supercharging device as ...

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04-02-2016 дата публикации

EXHAUST-GAS TURBOCHARGER

Номер: US20160032768A1
Автор: Schumnig Oliver
Принадлежит:

An exhaust-gas turbocharger () having a compressor housing () in which a compressor wheel () is arranged; a bearing housing (); and a turbine housing () in which a turbine wheel () is arranged. The axial abutment surfaces () are provided between the bearing housing () and the turbine housing (). The axial abutment surfaces () have at least one notch (). 29. The exhaust-gas turbocharger as claimed in claim 1 , wherein a multiplicity of notches () is provided.395656. The exhaust-gas turbocharger as claimed in claim 1 , wherein the notch () is provided in a turbine-housing-side abutment surface () and/or in a bearing-housing-side abutment surface () of the axial abutment surfaces ( claim 1 , ).41056. The exhaust-gas turbocharger as claimed in claim 1 , wherein at least one thermal insulator () is arranged between the axial abutment surfaces ( claim 1 , ).510. The exhaust-gas turbocharger as claimed in claim 4 , wherein the thermal insulator () is in the form of a closed ring.610. The exhaust-gas turbocharger as claimed in claim 4 , wherein the thermal insulator () is constructed from a multiplicity of separate segments.7109. The exhaust-gas turbocharger as claimed in claim 4 , wherein the thermal insulator () is arranged in the notch ().8104. The exhaust-gas turbocharger as claimed in claim 4 , wherein the thermal insulator () extends radially inward behind the turbine wheel (′).94. The exhaust-gas turbocharger as claimed in claim 1 , wherein a further thermal insulator is provided which is arranged behind the turbine wheel (′).10781115. The exhaust-gas turbocharger as claimed in claim 1 , having a radial centering surface pairing ( claim 1 , ) formed by a multiplicity of centering lobes (-).11171115. The exhaust-gas turbocharger as claimed in claim 10 , wherein a clearance () is arranged between the centering lobes (-). The invention relates to an exhaust-gas turbocharger according to the preamble of claim .The bearing housing and the turbine housing of an exhaust-gas ...

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04-02-2016 дата публикации

POWER CONVERSION DEVICE

Номер: US20160032817A1
Автор: Buschur Jeffrey J.
Принадлежит:

A power conversion device in the form of a compressor drive constitutes a three channel power sharing transmission which allows power input and/or output from shafts on two of the channels along with hydraulic, electric or potentially pneumatic power input and/or output from the third channel. Varying the input and/or output of hydraulic, electric or pneumatic flow provides a continuously variable transmission function. Several embodiments of the power conversion device are described to drive a supercharger for an internal combustion engine providing a variable ratio coupling allowing effective use of a centrifugal type compressor across a broad range of operational engine speeds. 1. A power conversion device comprising:a first shaft for receiving or inputting rotating motion;a motor mounted on said shaft, said motor having an output;means to transfer power to or from said motor; anda second shaft affixed to the motor output for receiving or inputting rotating motion.2. The power conversion device of claim 1 , further comprising:a compressor coupled to the motor output driving a forced air induction system to operatively provide boost for an internal combustion engine.3. The power conversion device of claim 2 , further comprising:a speed increasing mechanism disposed between the motor output and said compressor.4. The power conversion device of claim 3 , wherein said compressor comprises a centrifugal compressor.5. The power conversion device of claim 1 , further comprising:means to transfer power to or from said motor in the form of a hydraulic flow.6. The power conversion device of claim 1 , further comprising:means to transfer power to or from said motor in the form of an electric current.7. The power conversion device of claim 1 , further comprising: means to transfer power to or from said motor in the form of a pneumatic flow.8. The power conversion device of claim 5 , further comprising: passages formed within the rotating first shaft to channel hydraulic flow ...

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04-02-2016 дата публикации

LOW PRESSURE EXHAUST GAS RECIRCULATION MODULE

Номер: US20160032871A1
Принадлежит: BORGWARNER INC.

One variation may include an assembly comprising a housing assembly having an exhaust flow port and an EGR flow port formed therein, an exhaust flow port valve plate received in the housing assembly constructed and arranged to move to a position to at least partially block flow of gas through the exhaust flow port, and an EGR port valve plate received in the housing assembly and constructed and arranged to move to a position to at least partially block gas through the EGR flow port, and a single actuator connected to move both of the exhaust flow port valve plate and the EGR flow port valve plate. Another variation may include a combined low pressure exhaust gas recirculation valve and exhaust throttle valve including first and second valve plates connected to a common valve shaft in spaced apart relationship. 1. An assembly comprising a housing assembly having a first exhaust flow port and a second exhaust flow port formed therein , a first exhaust flow port valve plate received in the housing assembly constructed and arranged to move to a position to at least partially block flow of gas through the first exhaust flow port , and a second port valve plate received in the housing assembly and constructed and arranged to move to a position to at least partially block gas through the second exhaust flow port , and a single actuator connected to move both of the first exhaust flow port valve plate and the second exhaust flow port valve plate.2. An assembly as set forth in further comprising a shaft connected to the actuator and directly connected to at least one of the first exhaust flow port valve plate or the second flow port valve plate.3. An assembly as set forth in further comprising a shaft connected to the actuator and directly connected to each of the exhaust flow port valve plate and the second flow port valve plate.4. An assembly as set forth in further comprising a first housing and wherein at least one of the first exhaust flow port valve plate and the ...

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01-02-2018 дата публикации

METHODS AND SYSTEMS FOR PRESSURIZING HARSH FLUIDS

Номер: US20180030968A1
Принадлежит:

Methods and systems relate to a pressure exchanger which exchanges pressure energy from a high pressure clean fluid system to a relatively low pressure harsh fluid system for use in pressurizing the harsh fluid and directing the fluid to a wellbore as high pressure harsh fluid without the harsh fluid contacting identified portions of the pressure exchanger. 1. A method of pumping an oilfield fluid from a well surface to a wellbore , comprising:providing a low pressure source of harsh fluid;operating at least one high pressure pump to pump a clean fluid; andusing a piston assembly which is in contact with clean fluid in a direction of movement and which pushes the clean fluid using the pressure from the at least one high pressure pump in order to provide high pressure to the harsh fluid, thereby pushing the harsh fluid under high pressure toward the wellbore.2. The method of claim 1 , wherein a predetermined amount of clean fluid is used to buffer the piston assembly from the harsh fluid.3. The method of claim 2 , wherein the predetermined amount is a function of a dispersion length of the harsh fluid in the clean fluid when the piston assembly causes movement of the clean fluid and harsh fluid under high pressure.4. The method of claim 3 , wherein the function of a dispersion length is approximately three times the dispersion length.5. The method of claim 1 , wherein using a piston assembly comprises utilizing a system having at least two tubulars each containing a respective piston assembly claim 1 , the piston assemblies working in opposite phases to continuously pump the harsh fluid into the wellbore claim 1 , such that in a first half cycle claim 1 , a first of the respective piston assemblies is causing harsh fluid to be ejected from a first of the two tubulars under high pressure while a second of the tubulars is being filled with harsh fluid under low pressure claim 1 , and in a second half cycle claim 1 , a second of the respective piston assemblies is ...

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05-02-2015 дата публикации

Exhaust Management Strategies For Opposed-Piston, Two-Stroke Engines

Номер: US20150033736A1
Принадлежит:

Exhaust temperature management strategies for an opposed-piston, two-stroke engine with EGR are based on control of a ratio of the mass of fresh air and external EGR delivered to a cylinder to the mass of the trapped charge (density of the delivered charge multiplied by the trapped volume at port closing). 1. A two-cycle internal combustion engine including at least one cylinder with exhaust and intake ports , a charge air channel to provide charge air to at least one intake port of the engine , and an exhaust channel to receive exhaust from at least one exhaust port of the engine , in which an exhaust gas recirculation (EGR) loop has a loop input coupled to the exhaust channel and a loop output coupled to the charge air channel , a supercharger is operable to pump charge air in the charge air channel , a backpressure device is operable to control backpressure in the exhaust channel , and a control mechanization is operable to control the supercharger , the EGR loop , and the backpressure device during cold start of the engine.2. The two-cycle internal combustion engine of claim 1 , in which the charge air channel includes at least one charge air cooler claim 1 , wherein the loop output is coupled in series with the at least one charge air cooler.3. The two-cycle internal combustion engine of claim 1 , in which the EGR loop includes a variable valve and the control mechanization is operable to control a setting of the valve in response to a trapped temperature of the cylinder.4. The two-cycle internal combustion engine of claim 1 , in which the supercharger is one of a single-speed supercharger claim 1 , a multispeed supercharger claim 1 , and a variable-speed supercharger and the control mechanization is operable to control the speed of the supercharger in response to a trapped temperature of the cylinder.5. The two-cycle internal combustion engine of claim 1 , in which the backpressure device includes a variable valve and the control mechanization is operable to ...

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30-01-2020 дата публикации

ENGINE DRIVE APPARATUS

Номер: US20200032744A1
Принадлежит:

There is disclosed an engine drive apparatus comprising an engine configured to generate a power by combusting mixed gas of air and gas fuel; a fan assembly arranged in an upstream of the engine and configured to super-charge the mixed gas towards the engine; and a mixer provided in an upstream of the fan assembly and configured to mix the air and the fuel with each other, wherein the fan assembly comprises a motor; and a fan connected with the motor via a shaft to drive, and the air is supplied to the mixer after passing through the motor. 1. An engine drive apparatus comprising:an engine configured to generate a power by combusting mixed gas of air and gas fuel;a fan assembly arranged in an upstream of the engine and configured to super-charge the mixed gas towards the engine; anda mixer provided in an upstream of the fan assembly and configured to mix the air and the fuel with each other,wherein the fan assembly comprisesa motor; anda fan connected with the motor via a shaft to drive, andthe air is supplied to the mixer after passing through the motor.2. The engine drive apparatus of claim 1 , wherein the fan assembly comprisesa fan housing provided to accommodate the fan inside and having an open lower end; anda support bracket configured to support the motor in the upper area of the fan housing, space a apart from the fan housing,an inlet hole is formed in an upper end surface of the fan housing and configured to draw the mixed gas formed by the mixer towards the fan.3. The engine drive apparatus of claim 2 , wherein the support bracket comprises claim 2 ,a motor sheet on which the motor is disposed;a shaft penetrating hole formed in the motor sheet and configured to pass the shaft there through; anda plurality of support frames configured to support the motor sheet in a state of being spaced apart from the inlet hole, andlower ends of the support frames are coupled to coupling grooves that are formed in an outer area of an upper surface of the fan housing with ...

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30-01-2020 дата публикации

CENTRIFUGAL COMPRESSOR

Номер: US20200032817A1
Автор: UENO Takahiro
Принадлежит: IHI CORPORATION

A centrifugal compressor includes: an impeller (compressor impeller); a main flow passage, which has the impeller arranged therein, and extends in a rotation axis direction of the impeller; an auxiliary flow passage formed on a radially outer side of the impeller with respect to the main flow passage; an upstream communication passage configured to allow the auxiliary flow passage and the main flow passage to communicate to each other; a downstream communication passage configured to allow the auxiliary flow passage and the main flow passage to communicate to each other on a side closer to the impeller with respect to the upstream communication passage; and a partition portion (rib or fin) configured to partition the auxiliary passage in a circumferential direction while maintaining a gap larger than a flow passage width of the downstream communication passage in the auxiliary flow passage. 1. A centrifugal compressor , comprising:an impeller;a main flow passage in which the impeller is arranged, the main flow passage extending in a rotation axis direction of the impeller;an auxiliary flow passage formed on a radially outer side of the impeller with respect to the main flow passage;an upstream communication passage configured to allow the auxiliary flow passage and the main flow passage to communicate to each other;a downstream communication passage configured to allow the auxiliary flow passage and the main flow passage to communicate to each other on a side closer to the impeller with respect to the upstream communication passage; anda partition portion configured to partition the auxiliary passage into a plurality of flow passages separated apart from each other in a circumferential direction while maintaining a gap larger than a flow passage width of the downstream communication passage in the auxiliary flow passage.2. The centrifugal compressor according to claim 1 , wherein at least part of the gap is located on the downstream communication passage side with ...

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04-02-2021 дата публикации

CONTROL VALVE OF MULTI-SUPERCHARGER SYSTEM

Номер: US20210033033A1
Принадлежит:

A control valve of a multi-supercharger system is provided. The control valve includes a first spool rotatably fitted in a valve body and a second spool fitted in the valve body to be coaxially rotatable together with the first spool. A disk member is installed in the valve body to partition a first chamber, in which the first spool is disposed, and a second chamber, in which the second spool is disposed, from each other. A portion of the disk member includes a communication sector, through which the first chamber and the second chamber communicate with each other. A first inlet and a first outlet are disposed in the valve body and a second inlet and a second outlet are disposed in the valve body. A first valve aperture is formed in the first spool for allowing the first spool to communicate with the communication sector. 1. A control valve of a multi-supercharger system , comprising:a valve body;a first spool rotatably fitted in the valve body;a second spool fitted in the valve body to be coaxially rotatable together with the first spool;a disk member installed in the valve body to partition a first chamber, in which the first spool is disposed, and a second chamber, in which the second spool is disposed, from each other, wherein a portion of the disk member includes a communication sector, through which the first chamber and the second chamber communicate with each other;a first inlet and a first outlet disposed in the valve body to switch communication with an interior of the first spool according to rotation of the first spool;a second inlet and a second outlet disposed in the valve body to switch communication with an interior of the second spool according to rotation of the second spool; anda first valve aperture formed in the first spool to provide communication between the interior of the first spool and the communication sector when the first spool is rotated in the valve body.2. The control valve according to claim 1 , wherein the second spool includes a ...

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04-02-2021 дата публикации

Centrifugal compressor and turbocharger

Номер: US20210033103A1

A centrifugal compressor includes an impeller, a compressor inlet pipe for guiding air to the impeller, a scroll passage disposed on an outer peripheral side of the impeller, and a bypass passage connecting the compressor inlet pipe and the scroll passage and bypassing the impeller. In a cross-section perpendicular to an axis of the compressor inlet pipe, when A 1 is a connection portion on a downstream side in a rotational direction of the impeller of connection portions between an inner wall surface of the compressor inlet pipe and an inner wall surface of the bypass passage, C is a virtual circle constituting the inner wall surface of the compressor inlet pipe, and L 1 is a tangent line of the virtual circle C at the connection portion A 1, the inner wall surface of the bypass passage is formed from the connection portion A 1 along the tangent line L 1.

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11-02-2016 дата публикации

LUBRICANT FEED MECHANISM FOR TURBOCHARGER

Номер: US20160040591A1
Принадлежит: TAIHO KOGYO CO., LTD.

Provided is a lubricant feed mechanism for a turbocharger, the mechanism that can reduce work of an oil pump while preventing an excessive supply of lubricant to a bearing part. The lubricant feed mechanism for a turbocharger, the mechanism of feeding lubricant to a bearing part that rotatably supports a shaft connecting a compressor wheel and a turbine wheel, includes: an oil supply passage that guides the lubricant fed under pressure from the oil pump to the bearing part; and a flow control valve provided to the oil supply passage for adjusting the amount of the lubricant by throttling the flow passage of the lubricant based on a pressure of the lubricant flowing through the oil supply passage. 1. A lubricant feed mechanism for a turbocharger , the turbocharger including a bearing part that rotatably supports a shaft connecting a compressor wheel and a turbine wheel , the lubricant feed mechanism comprising:an oil supply passage that guides the lubricant fed under pressure from an oil pump to the bearing part; anda flow control valve provided in the oil supply passage for adjusting an amount of the lubricant fed to the bearing part by throttling a flow passage of the lubricant based on a pressure of the lubricant flowing through the oil supply passage.2. The lubricant feed mechanism for a turbocharger according to claim 1 , wherein the flow control valve is provided in a bearing housing where the bearing part is formed. The present invention relates to the techniques of a lubricant feed mechanism for a turbocharger, the mechanism of feeding lubricant to a bearing part that rotatably supports a shaft connecting a compressor wheel and a turbine wheel.The techniques of lubricant feed mechanisms for turbochargers that feed lubricant to a bearing part that rotatably supports a shaft connecting a compressor wheel and a turbine wheel have hitherto been known. For example, the technique is described in Patent Literature 1.Patent Literature 1 describes a lubricant feed ...

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11-02-2016 дата публикации

Air supply system

Номер: US20160040636A1

An air supply system for supplying fresh air to at least one combustion chamber of an internal combustion engine may include a housing having a fresh air path and a lateral introduction opening. A charge-air cooler may be instertable into the housing via the introduction opening along an introduction direction. The charge-air cooler may be arranged in the housing and the fresh air path may extend through the charge air cooler. The charge air cooler may include an outer end region closing the introduction opening. The outer end region of the charge-air cooler may be secured to the housing.

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11-02-2016 дата публикации

EXHAUST-GAS TURBOCHARGER

Номер: US20160040678A1
Принадлежит:

An exhaust-gas turbocharger () having a compressor () which has a compressor housing (); a turbine () which has a turbine housing (); and a compressor-side and/or turbine-side charge pressure regulating device () which has a shut-off element () which opens or closes a flow opening (). The shut-off element () is in the form of a slide which is mounted on a guide () so as to be longitudinally displaceable along a longitudinal central line (LM) of the guide (), and the flow opening () is arranged at least substantially at a right angle (α) with respect to the longitudinal central line (LM) of the guide (). 11. An exhaust-gas turbocharger () , having{'b': 2', '3, 'a compressor () which has a compressor housing ();'}{'b': 4', '5, 'a turbine () which has a turbine housing (); and'}{'b': 6', '7', '9, 'a compressor-side and/or turbine-side charge pressure regulating device () which has a shut-off element () which opens or closes a flow opening (), wherein'}{'b': 7', '8', '8, 'sub': '8', 'the shut-off element () is in the form of a slide which is mounted on a guide () so as to be longitudinally displaceable along a longitudinal central line (LM) of the guide (), and'}{'b': 9', '8, 'sub': '8', 'the flow opening () is arranged at least substantially at a right angle (a) with respect to the longitudinal central line (LM) of the guide ().'}271011. The exhaust-gas turbocharger as claimed in claim 1 , wherein the slide () has a slide head () which is connected to a slide rod ().3101312. The exhaust-gas turbocharger as claimed in claim 2 , wherein the slide head () is pot-shaped with a cylindrical guide and seal wall () that points into an interior space ().41014151615. The exhaust-gas turbocharger as claimed in claim 3 , wherein the slide head () is mounted on a cylindrical guide spigot () which has a cylindrical outer wall () and a face wall () that adjoins the outer wall ().5151013. The exhaust-gas turbocharger as claimed in claim 4 , wherein the outer wall () guides the slide ...

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09-02-2017 дата публикации

UNDERPLATFORM DAMPING MEMBERS AND METHODS FOR TURBOCHARGER ASSEMBLIES

Номер: US20170037734A1
Принадлежит:

Damping members for turbocharger assemblies, methods for providing turbocharger assemblies, and turbocharger assemblies are described herein. The damping members include bodies having shapes to fit between a recess extending into a rotor disk of a turbocharger and laterally protruding shoulders of platforms in neighboring blades of the turbocharger. The bodies dampen vibrations of the blades during rotation of the blades. The damping members may include a variety of shapes, such as a sheet, a wedge, a tapered pin, a cylindrical pin, a bent sheet, or another shape. 1. A damping member comprising:a body having a shape to fit between a recess extending into a rotor disk of a turbocharger and laterally protruding shoulders of platforms in neighboring blades of the turbocharger, the body configured to dampen vibrations of the blades during rotation of the blades and the rotor disk by engaging under surfaces of the shoulders of the platforms that oppose the rotor disk of at least one of the blades.2. The damping member of claim 1 , wherein the body has the shape to concurrently engage the under surfaces of the shoulders of the platforms of the blades when the platforms are misaligned with respect to the rotor disk.3. The damping member of claim 1 , wherein the shape of the body is sized to fit between the recess in the rotor disk and the laterally protruding shoulders of the platforms in the neighboring blades that do not include shanks vertically extending between dovetails of the blades and the platforms of the blades.4. The damping member of claim 1 , wherein the body has the shape of a sheet having opposite parallel first and second sides and opposite parallel first and second edges claim 1 , wherein the first and second edges intersect the first side at curved interfaces that are configured to concurrently engage the under surfaces of the shoulders of the platforms in the blades.5. The damping member of claim 1 , wherein the body has the shape of a wedge comprising a ...

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09-02-2017 дата публикации

ELECTRIC COMPRESSOR AND METHOD FOR PRODUCING AN ELECTRIC COMPRESSOR

Номер: US20170037858A1
Принадлежит:

An electric compressor for compressing a gas, particularly configured for use in a motor vehicle, comprising a control unit, an electric motor controlled by the control unit, a compressor wheel driven by the electric motor, and a housing at least partially surrounding the electric motor. The housing is produced by an encapsulation method such that a cooling structure is formed integrally with the housing, in particular within the housing, for ensuring cooling of the electric motor and of the control unit. A method for producing the electric compressor of this kind is also disclosed. 1. An electric compressor for compressing a gas and configured for use in a motor vehicle , the electric compressor comprising:a control unit;an electric motor, wherein the electric motor can be controlled by means of the control unit;a compressor wheel, wherein the compressor wheel can be driven by means of the electric motor; anda housing, wherein the housing at least partially surrounds the electric motor, wherein the housing is produced in such a way by means of an encapsulation method that a cooling structure is formed integrally with the housing, in particular in the housing, ensuring cooling of the electric motor and of the control unit.2. The electric compressor according to claim 1 , wherein the compressor wheel and the electric motor are arranged coaxially on a shaft.3. The electric compressor according to claim 1 , wherein the housing at least partially encloses the control unit.4. The electric compressor according to claim 1 , wherein the cooling structure has a plurality of cooling ducts.5. The electric compressor according to claim 4 , wherein the electric motor has a stator and the cooling structure is formed at least partially around the outer circumference of the stator.6. The electric compressor according to claim 5 , wherein the stator is of substantially annular design and has a plurality of axially extending recesses uniformly spaced apart along its outer ...

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09-02-2017 дата публикации

ELECTRIC COMPRESSOR

Номер: US20170037872A1
Принадлежит:

An electric compressor for compressing a gas, and in particular, an electric compressor for a motor vehicle comprising a compressor wheel, an electric motor, wherein the compressor wheel can be driven by the electric motor, a control unit, wherein the electric motor can be controlled by the control unit, and a housing having at least one open end for receiving the control unit. The housing has at least one recess on the inner circumference at the open end that is designed so as to be open in the direction of the housing interior. The control unit can be inserted into the housing in such a way that it closes the open end of the housing and the recess on the inner circumference. 1. An electric compressor for compressing a gas and configured for use in a motor vehicle , the electric compressor comprising:a compressor wheel;an electric motor, wherein the compressor wheel can be driven by means of the electric motor;a control unit, wherein the electric motor can be controlled by means of the control unit; anda housing, wherein the housing has at least one open end for receiving the control unit, wherein that the housing has at least one recess on the inner circumference at the open end, and wherein the recess is designed so as to be open in the direction of the housing interior such that the control unit can be inserted into the housing in such a way that it closes the open end of the housing and the recess on the inner circumference.2. The electric compressor according to claim 1 , wherein there can be a flow of a cooling fluid through the recess on the inner circumference of the housing.3. The electric compressor according to claim 1 , wherein the control unit is at least partially surrounded by a jacket claim 1 , wherein the jacket is composed of a material of good thermal conductivity.4. The electric compressor according to claim 1 , wherein the housing is of substantially cylindrical design on its housing inner side claim 1 , in the region of the open end.5. The ...

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08-02-2018 дата публикации

INTERNAL COMBUSTION ENGINE INTAKE POWER BOOSTER SYSTEM

Номер: US20180038271A1
Принадлежит:

An internal combustion engine includes an intake conduit fluidically coupled to ambient fluid and having an internal cross-sectional area and an engine cylinder fluidically coupled to the intake conduit. A fluidic amplifier is disposed within the intake conduit and is fluidically coupled to the ambient fluid and engine cylinder. The amplifier is further fluidically coupled to a source of primary fluid and is configured to introduce the primary fluid and at least a portion of the ambient fluid to the engine cylinder. 1. An internal combustion engine , comprising:an intake conduit fluidically coupled to ambient fluid and having an internal cross-sectional area;an engine cylinder fluidically coupled to the intake conduit; anda fluidic amplifier disposed within the intake conduit, the amplifier fluidically coupled to the ambient fluid and engine cylinder, the amplifier further fluidically coupled to a source of primary fluid, the amplifier configured to introduce the primary fluid and at least a portion of the ambient fluid to the engine cylinder.2. The engine of claim 1 , wherein the amplifier occupies less than the internal cross-sectional area of the intake conduit.3. The engine of claim 1 , wherein the amplifier comprises:a convex surface;a diffusing structure coupled to the convex surface; andan intake structure coupled to the convex surface and configured to introduce to the diffusing structure the primary fluid, wherein the diffusing structure comprises a terminal end configured to provide egress from the amplifier for the introduced primary fluid and ambient fluid.4. The engine of claim 3 , wherein the convex surface includes a plurality of recesses.5. The engine of claim 1 , wherein the amplifier is configured to introduce the primary fluid in a pulsed manner at a predetermined frequency.6. The engine of claim 1 , wherein the primary-fluid source comprises an exhaust manifold fluidically coupled to the engine cylinder such that the primary fluid comprises ...

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24-02-2022 дата публикации

Gas engine heat pump

Номер: US20220056837A1
Принадлежит: LG ELECTRONICS INC

The present disclosure relates to a gas engine heat pump including: an engine which burns a mixed air of air and fuel; a first exhaust flow path which is connected to the engine so that exhaust gas discharged from the engine passes through and is discharged to the outside; a turbo charger including: a first compressor which compresses the mixed air and supplies to the engine, and a first turbine which is installed in the first exhaust flow path and receives the exhaust gas passing through the first exhaust flow path to drive the first compressor; a supercharger which is installed in the first exhaust flow path between the engine and the first turbine, and receives and compresses the exhaust gas passing through the first exhaust flow path to supply to the first turbine; a second exhaust flow path which is branched from the first exhaust flow path between the engine and the supercharger, and converges to the first exhaust flow path between the supercharger and the first turbine; a first valve which is installed to be opened and closed in the second exhaust flow path; a third exhaust flow path which is branched from the first exhaust flow path between the supercharger and the first turbine, and converges to the first exhaust flow path in downstream of the first turbine; a second valve which is installed to be opened and closed in the third exhaust flow path; and a controller which controls operations of the first valve, the second valve, and the supercharger according to load of the engine.

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24-02-2022 дата публикации

Multi-Purpose Drive for Internal Combustion Engine

Номер: US20220056839A1
Автор: Rutledge John
Принадлежит: Perkins Engines Company Limited

An engine assembly comprises: an internal combustion engine having: a combustion chamber; an air inlet for supplying air to the combustion chamber; a fuel injector for supplying fuel to the combustion chamber; an exhaust outlet for releasing exhaust gas from the combustion chamber and a rotatable drive shaft, wherein combustion of fuel in air within the combustion chamber results in rotation of the drive shaft. The engine assembly further comprises: a turbocharger system comprising: a turbine configured to recover energy from exhaust gas provided via the exhaust gas outlet; and a turbocharger compressor configured to receive energy from the turbine and thereby to compress air for use in combustion of fuel in the combustion chamber. The engine assembly further comprises: a supercharger system comprising a supercharger compressor configured to receive kinetic energy from the drive shaft and to compress air for use in combustion in the combustion chamber. The engine assembly further comprises: a flywheel configured for kinetic energy storage; a first linkage between the drive shaft and the flywheel, wherein the linkage comprises a variable belt drive; and a second linkage between the first linkage and the supercharger compressor. 1. An engine assembly comprising:an internal combustion engine having: a combustion chamber; an air inlet for supplying air to the combustion chamber; a fuel injector for supplying fuel to the combustion chamber; an exhaust outlet for releasing exhaust gas from the combustion chamber and a rotatable drive shaft, wherein combustion of fuel in air within the combustion chamber results in rotation of the drive shaft;a turbocharger system comprising: a turbine configured to recover energy from exhaust gas provided via the exhaust gas outlet; and a turbocharger compressor configured to receive energy from the turbine and thereby to compress air for use in combustion of fuel in the combustion chamber;a supercharger system comprising a supercharger ...

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19-02-2015 дата публикации

Exhaust Gas System of an Internal Combustion Engine, and Method for Preparing a Reducing Agent Which is Introduced into the Internal Combustion Engine Exhaust Gas

Номер: US20150047324A1
Принадлежит:

An exhaust gas system includes a reducing agent preparation section having a first cylindrical exhaust gas line pipe section opening approximately perpendicularly into a second exhaust gas line pipe section via an opening in a cylinder lateral surface of the second exhaust gas line pipe section. An injector unit for introducing the reducing agent into the exhaust gas is situated at the first exhaust gas line pipe section, upstream from the opening. The opening in the cylinder lateral surface of the second exhaust gas line pipe section has a larger extension in the direction of the longitudinal extent of the second exhaust gas line pipe section than transversely thereto. In a method using the reducing agent preparation section a rotating exhaust gas flow is formed within the second exhaust gas line pipe section. 114-. (canceled)15. An exhaust gas system of an internal combustion engine , comprising:a first cylindrical exhaust gas line pipe section; and an injector unit configured to introduce a reducing agent into exhaust gas flowing through the first exhaust gas line pipe section is situated at the first exhaust gas line pipe section,', 'the second exhaust gas line pipe section has a cylinder lateral surface, a closed first end, an open second end, and an opening in the cylinder lateral surface adjacent to the closed end,', 'an open end of the first exhaust gas line pipe section is connected in a positive-fit manner to the second exhaust gas line pipe section in such a way that exhaust gas flowing from the open end of the first exhaust gas line pipe section flows through the opening in the cylinder lateral surface of the second exhaust gas line pipe section, in an at least approximately vertical direction with respect to a longitudinal extent of the second exhaust gas line pipe section, into the second exhaust gas line pipe section, and', 'the opening in the cylinder lateral surface of the second exhaust gas line pipe section has a larger extension in the direction ...

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19-02-2015 дата публикации

Exhaust gas mixer and system

Номер: US20150047330A1
Автор: Xiaogang Zhang
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A device and a system are provided. The system may include a perforated barrier disposed within an exhaust stream downstream from the combustion chamber(s). The barrier may divide the exhaust stream radially and longitudinally. A mixing surface may be coupled with the perforated barrier which may define a path within the exhaust stream to impart a swirl to the exhaust stream.

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19-02-2015 дата публикации

VARIABLE SPEED HYBRID ELECTRIC SUPERCHARGER ASSEMBLY AND METHOD OF CONTROL OF VEHICLE HAVING SAME

Номер: US20150047617A1
Принадлежит:

A supercharger assembly includes a supercharger in series with an engine that has a crankshaft and has an air intake manifold defining a plenum through which air flow is provided to the engine. A supercharger is upstream of the plenum in air flow to the engine and has a first rotor rotatable with a first shaft and a second rotor rotatable with a second shaft. The supercharger assembly also includes an electric motor-generator that is selectively alternately operable as a motor and as a generator, and a planetary gearing arrangement having a first member operatively connected to the electric motor-generator, a second member connectable to be rotated by the engine crankshaft, and a third member operatively connected for rotation with the first shaft. The supercharger assembly has only two selectively engageable torque-transmitting mechanisms and a control system configured to control the electric motor-generator and the torque-transmitting mechanisms. 1. A supercharger assembly for an engine having a crankshaft and an air intake manifold defining a plenum through which air flow is provided to the engine , the supercharger assembly comprising:a supercharger upstream of the plenum in the air flow to the engine, wherein the supercharger has a first rotor mounted on and rotatable with a first shaft and a second rotor meshing with the first rotor and mounted on and rotatable with a second shaft via rotation of the first shaft;an electric motor-generator selectively operable as a motor and as a generator;a planetary gearing arrangement having a first member operatively connected to be rotated by the electric motor-generator, a second member connectable to be rotated by the engine crankshaft, and a third member operatively connected for rotation with the first shaft;two selectively engageable torque-transmitting mechanisms including a clutch selectively engageable to operatively connect the second member for rotation with the engine crankshaft, and a brake selectively ...

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15-02-2018 дата публикации

PASSIVE INLET-ADJUSTMENT MECHANISMS FOR COMPRESSOR, AND TURBOCHARGER HAVING SAME

Номер: US20180045107A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

A centrifugal compressor for a turbocharger includes a passive inlet-adjustment mechanism in an air inlet for the compressor, operable to move between an open position and a closed position solely by aerodynamic forces on the mechanism. The inlet-adjustment mechanism includes a plurality of flexible vanes collectively forming a duct, and an effective diameter of the air inlet at the inducer portion of the compressor wheel is determined by a trailing edge inside diameter of the duct. The vanes are movable solely by aerodynamic forces exerted on the vanes by the air flowing to the compressor wheel. The duct has a tapering configuration when the vanes are in a relaxed state, but under aerodynamic force the vanes flex outwardly and increase the trailing edge inside diameter of the duct, thereby increasing an effective diameter of the air inlet. 1. A turbocharger , comprising:a turbine housing and a turbine wheel mounted in the turbine housing and connected to a rotatable shaft for rotation therewith, the turbine housing receiving exhaust gas and supplying the exhaust gas to the turbine wheel;a centrifugal compressor assembly comprising a compressor housing and a compressor wheel mounted in the compressor housing and connected to the rotatable shaft for rotation therewith, the compressor wheel having blades and defining an inducer portion, the compressor housing defining an air inlet for leading air generally axially into the inducer portion of the compressor wheel, the compressor housing further defining a volute for receiving compressed air discharged generally radially outwardly from the compressor wheel, the air inlet having an inner surface that extends for an axial length along a downstream direction, followed by an inlet-adjustment mechanism disposed in the air inlet, followed by a shroud surface that is adjacent to outer tips of the blades of the compressor wheel;the inlet-adjustment mechanism comprising a plurality of vanes constructed of a flexible material, ...

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15-02-2018 дата публикации

MEMBRANE PUMP, IN PARTICULAR FOR USE IN THE EXHAUST GAS SYSTEM OF AN INTERNAL COMBUSTION ENGINE, AND INTERNAL COMBUSTION ENGINE COMPRISING A MEMBRANE PUMP

Номер: US20180045192A1
Автор: Hofmann Arno
Принадлежит:

A membrane pump (″), in particular for use in the exhaust gas tract of a combustion engine (), comprising a pressure housing (), the internal volume () of which is subdivided by a number of resiliently deformable membranes () into a plurality of sub-volumes () separated from one another on the gas side, wherein a biasing force is applied to the or each membrane () in such a way that in the pressure-free state the sub-volume () forming the primary side has a minimum value in relation to the deformability of the or each membrane (), is to act so as particularly to increase effectiveness during use in the exhaust system of a combustion engine (). For this purpose, according to the invention, a leaf spring () is provided as a restoring spring for applying the biasing force to the membrane (). 119070246810686366. Membrane pump () , in particular for use in the exhaust gas tract () of a combustion engine () , comprising a pressure housing () , the internal volume () of which is subdivided by a number of resiliently deformable membranes () into a plurality of sub-volumes ( , ) separated from one another on the gas side , wherein a biasing force is applied to the or each membrane () in such a way that in the pressure-free state the sub-volume () forming the primary side has a minimum value in relation to the deformability of the or each membrane () , and wherein a leaf spring () is provided as a restoring spring for applying the biasing force to the membrane ().213668. Membrane pump () according to claim 1 , of which the leaf spring () provided for applying the biasing force to the membrane () is arranged in the sub-volume () forming the primary side.31366. Membrane pump () according to either or claim 1 , of which the leaf spring () is connected to the membrane () centrally.4136238. Membrane pump () according to any of to claim 1 , of which the leaf spring () is braced movably on the pressure housing () at the free spring ends () thereof.5136. Membrane pump () according to ...

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15-02-2018 дата публикации

COMPRESSOR WHEEL, METHOD OF MAKING THE SAME, AND TURBOCHARGER INCLUDING THE SAME

Номер: US20180045214A1
Принадлежит:

A turbocharger includes a turbine housing defining a turbine housing interior, a turbine wheel disposed within the turbine housing interior, a shaft coupled to and rotatable by the turbine wheel, a compressor housing defining a compressor housing interior and a flow path, and a compressor wheel disposed within the compressor housing interior and coupled to the shaft. The compressor wheel has a hub coupled to the shaft, and a plurality of impeller blades extending radially from the hub. The plurality of impeller blades define an inducer end having an inducer diameter, and an exducer end having an exducer diameter greater than the inducer diameter. The inducer diameter and the exducer diameter establish a compressor trim. The compressor wheel also has a compressor wheel shroud disposed about the plurality of impeller blades. The compressor wheel shroud encloses the plurality of impeller blades to define a shroud interior. 1. A turbocharger for receiving exhaust gas from an internal combustion engine and for delivering compressed air to the internal combustion engine , said turbocharger comprising:a turbine housing defining a turbine housing interior;a turbine wheel disposed within said turbine housing interior for receiving the exhaust gas from the internal combustion engine;a shaft coupled to and rotatable by said turbine wheel;a compressor housing defining a compressor housing interior and a flow path, with said flow path fluidly coupling said compressor housing interior with the internal combustion engine; and a hub coupled to said shaft, with said hub having a hub length extending along an axis that extends along said compressor housing interior, with said hub presenting an outer hub surface concentric about said axis, and with said hub having a first hub end and a second hub end spaced from said first hub end along said hub length,', 'a plurality of impeller blades extending radially from said outer hub surface, with each of said impeller blades having a root ...

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14-02-2019 дата публикации

Supercharger of an Internal Combustion Engine

Номер: US20190048787A1
Принадлежит: ROBERT BOSCH GMBH

A supercharger for an internal combustion engine includes a supercharger chamber, a diaphragm, an inlet valve, an outlet valve, an exhaust gas line, and an actuator. The diaphragm is positioned in the supercharger chamber and divides the supercharger chamber into an intake chamber and an exhaust gas chamber. The inlet valve and outlet valve are positioned on the intake chamber. The exhaust gas chamber is connected to the exhaust gas line, and to the actuator. The actuator is electrically actuatable, is connected to the diaphragm, and is configured to change a resonance frequency of the diaphragm.

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14-02-2019 дата публикации

COMPRESSOR IMPELLER AND TURBOCHARGER

Номер: US20190048878A1
Автор: AKIMOTO Kenta
Принадлежит: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI

A centrifugal compressor impeller is configured such that the compressor impeller is accommodated within a housing and is rotated in a predetermined rotational direction relative to the housing to compress fluid which flows in the axial direction and deliver the fluid to the outside in the radial direction. The compressor impeller is provided with: a hub extending in the axial direction; and a plurality of blades extending from the hub toward the outside in the radial direction and arranged side by side in the rotational direction. At least one of the plurality of blades is provided with a corner formed by both a leading edge extending from the hub toward the outside in the radial direction, and a shroud line connected to the leading edge. The corner has a through-section extending between the front and rear sides of the blade. 1. A centrifugal compressor impeller that is configured to be accommodated in a housing and rotate relative to the housing in a predetermined rotation direction to compress a fluid flowing in an axial direction and send out the fluid outward in a radial direction , the compressor impeller comprising:a hub that extends in the axial direction; anda plurality of vanes that extend outward in the radial direction from the hub and are arranged next to one another in the rotation direction, whereinat least one of the vanes includes a corner portion defined by a leading edge, which extends outward in the radial direction from the hub at an upstream end with respect to a flow direction of the fluid, and a shroud line, which is connected to the leading edge and extends along an inner wall of the housing,and the corner portion includes a through portion that extends through the vane from a front side to a back side.2. The compressor impeller according to claim 1 , wherein the vane includes a front surface that is directed in the rotation direction and a rear surface that is located at an opposite side of the front surface;the through portion includes a ...

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25-02-2016 дата публикации

TURBINE WHEEL OF AN EXHAUST-GAS TURBOCHARGER

Номер: US20160053616A1
Принадлежит:

A turbine wheel () of an exhaust-gas turbocharger (), formed from a titanium aluminide material, having a wheel back () which is of closed configuration as viewed from an axial direction (A) and which has an outer contour (), a hub () which extends from the wheel back () and which tapers along the axial direction (A), and a multiplicity of turbine blades () which extend from the wheel back () and from the hub () and which blades extend outward in a radial direction (R), as far as a connection region outer diameter (DAB) at least in a connection region (). The wheel back () has, in an outer region () adjoining the connection region (), a wheel back outer diameter (DRR) which is greater than or equal to the connection region outer diameter (DAB). 112. A turbine wheel () of an exhaust-gas turbocharger () , formed from a titanium aluminide material , having{'b': 7', '17, 'a wheel back () which is of closed configuration as viewed from an axial direction (A) and which has an outer contour (),'}{'b': 3', '7, 'a hub () which extends from the wheel back () and which tapers along the axial direction (A), and'}{'b': 4', '7', '3', '5, 'a multiplicity of turbine blades () which extend from the wheel back () and from the hub () and which extend outward in a radial direction (R), as far as a connection region outer diameter (DAB) at least in a connection region (),'}{'b': 7', '11', '5, 'the wheel back () having, in an outer region () adjoining the connection region (), a wheel back outer diameter (DRR) which is greater than or equal to the connection region outer diameter (DAB).'}2754. The turbine wheel as claimed in claim 1 , wherein the wheel back () has claim 1 , at least adjacent to the connection region () claim 1 , a wall thickness (WRR) which is in a ratio of 1.5:1 to 2.5:1 with respect to a wall thickness (WTS) of the turbine blade ().389107. The turbine wheel as claimed in claim 1 , wherein a wheel hub region () extending in the axial direction (A) merges in continuous ...

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23-02-2017 дата публикации

TURBOCHARGER WITH COMPRESSOR OPERABLE IN EITHER SINGLE-STAGE MODE OR TWO-STAGE SERIAL MODE

Номер: US20170051661A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

A turbocharger includes a two-stage serial compressor having first and second impellers, with a crossover duct for leading air from the first impeller into the second impeller for further compression. The compressor housing also defines a bypass duct from the crossover duct to the air discharge duct from the compressor, and a bypass valve disposed in the bypass duct. Under certain operating conditions (such as high-flow, low-pressure-ratio conditions) the bypass valve can be opened to bypass the second impeller, such that the compressor behaves like a single-stage compressor. At other operating conditions, the bypass valve is closed so that the compressor provides two-stage compression for higher pressure ratios. 1. A turbocharger operable in either single-stage compression mode or two-stage serial compression mode , comprising:a turbine comprising a turbine wheel and a turbine housing, the turbine wheel being affixed to one end of a rotatable shaft, the turbine housing defining an axial bore therethrough in which the turbine wheel is disposed, an exhaust gas inlet, a generally annular turbine volute surrounding the turbine wheel, and a nozzle leading from the turbine volute into the turbine wheel;a compressor comprising a compressor wheel and a compressor housing, the compressor wheel being affixed to an opposite end of the shaft and being disposed in the compressor housing, the compressor wheel comprising a first impeller and a second impeller, the compressor housing defining a first air inlet for leading air into the first impeller, a second air inlet for leading air into the second impeller, a first compressor volute surrounding the first impeller and configured for receiving air pressurized by the first impeller, a crossover duct configured to lead pressurized air from the first compressor volute into the second air inlet, and a second compressor volute surrounding the second impeller and configured for receiving air pressurized by the second impeller, and an ...

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23-02-2017 дата публикации

RECIRCULATION NOISE OBSTRUCTION FOR A TURBOCHARGER

Номер: US20170051761A1
Автор: PRUITT Daniel
Принадлежит: BORGWARNER, INC.

A compressor housing () for a turbocharger includes a recirculation cavity () formed in a portion of the compressor housing (). The recirculation cavity () is defined by an inner cavity wall () and an outer cavity wall (). In addition, an inlet groove () and an outlet () are formed in the recirculation cavity () for circulating airflow from the compressor housing () through the recirculation cavity (), and at least one recirculation noise obstruction () is fixedly secured within the recirculation cavity () to disrupt air flow through the cavity and reduce noise in the compressor housing (). 112. A compressor housing () for a turbocharger comprising:{'b': 4', '12', '4', '2', '5, 'a recirculation cavity () formed in a portion of the compressor housing (), the recirculation cavity () defined by an inner cavity wall () and an outer cavity wall ();'}{'b': 1', '7', '4', '12', '4, 'an inlet groove () and an outlet () formed in the recirculation cavity () for circulating airflow from the compressor housing () through the recirculation cavity (); and'}{'b': 6', '4', '4', '12, 'at least one recirculation noise obstruction () is fixedly secured within the recirculation cavity () to disrupt air flow through the recirculation cavity () and reduce noise in the compressor housing ().'}2101412. The compressor housing of claim 1 , further comprising a compressor air inlet portion () configured to supply air to a compressor wheel () disposed in the compressor housing () claim 1 , wherein{'b': 1', '10', '7', '10, 'the inlet groove () communicates with the compressor air inlet portion () at a location downstream of the outlet (), where the term “downstream” refers to a location relative to a direction of airflow through the compressor air inlet portion (), and'}{'b': 6', '4', '1', '6', '7, 'the at least one recirculation noise obstruction () is secured within the recirculation cavity () at a location such that the inlet groove () is disposed between the at least one recirculation noise ...

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15-05-2014 дата публикации

Exhaust gas line of an internal combustion engine

Номер: US20140130769A1
Принадлежит: AVL List GmbH

The invention relates to an exhaust gas line ( 1 ) of an internal combustion engine, comprising at least one catalytic converter ( 2 ) which is provided with at least one catalytic converter support ( 4 ) which is arranged in the housing ( 3 ) and which comprises at least one first and one second area ( 5, 6 ) which can be flowed through in parallel, with the flow being capable of being deactivated in at least one area by means of a switching device ( 8 ) arranged in the exhaust gas line ( 1 ). In order to achieve a rapid activation of the catalytic converter in the simplest possible and most compact way it is provided that the areas ( 5, 6 ) of the catalytic converter support ( 4 ) have different physical and/or chemical properties in relation to response behavior, permeability, catalytic activity and/or thermal inertia.

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15-05-2014 дата публикации

Static mixer for the treatment of exhaust gases and manufacturing method thereof

Номер: US20140133268A1
Принадлежит: Officine Metallurgiche G Cornaglia SpA

Static mixer for the treatment of exhaust gases, including an annular support portion and a plurality of substantially coplanar radial vanes that are arranged radially with their rear portions or bases associated with the support portion and the front portions or radial tips converging towards the centre of the mixer, wherein the body of the vanes includes at least three lines of bending, which define respective portions arranged on non parallel planes and defining corresponding impact surfaces for the exhaust gases.

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05-03-2015 дата публикации

Apparatus for Facilitating Reducant Decomposition and Mixing

Номер: US20150059319A1
Принадлежит:

According to one embodiment, an apparatus () for mounting to an inner wall () of an exhaust tube () includes a tube engagement surface () and an exhaust engagement surface (A). The tube engagement surface comprises a convex surface of a constant first radius of curvature about a first axis. The exhaust engagement surface is adjacent the tube engagement surface, and includes a concave surface of a second radius of curvature about a second axis generally perpendicular to the first axis. 1. An apparatus for mounting to an inner wall of an exhaust tube , comprising:a tube engagement surface comprising a convex surface of a constant first radius of curvature about a first axis; andan exhaust engagement surface adjacent the tube engagement surface, the exhaust engagement surface comprising a concave surface of a second radius of curvature about a second axis generally perpendicular to the first axis.2. The apparatus of claim 1 , further comprising a rounded tip surface extending linearly from a first end of the tube engagement surface to a second end of the tube engagement surface claim 1 , the exhaust engagement surface extending between the tube engagement surface and the rounded tip surface.3. The apparatus of claim 1 , wherein the apparatus has a substantially T-shaped cross-section.4. The apparatus of claim 1 , wherein the first radius of curvature matches a radius of the exhaust tube.5. The apparatus of claim 4 , wherein an overall height of the apparatus is between about 10% and 50% of the radius of the exhaust tube.6. The apparatus of claim 1 , further comprising a ledge surface between the tube engagement surface and the exhaust engagement surface claim 1 , the ledge surface being substantially planar and extending substantially transversely relative to the tube engagement surface claim 1 , and wherein the ledge surface has a length that is less than an overall length of the apparatus.7. The apparatus of claim 1 , wherein a ratio of the second radius of curvature ...

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10-03-2022 дата публикации

SUPERCHARGER WITH TWO COMPRESSORS DRIVEN TOGETHER ON A SINGLE SHAFT

Номер: US20220074342A1
Автор: Hall David M.
Принадлежит: Bullseye Power, LLC

A supercharger for an internal combustion engine includes two compressors, each having a compressor wheel mounted on a common shaft, and a mechanical linkage for transmitting power from a running engine to the common shaft to provide a desired boost with less torque by using two smaller compressor wheels rather than a single larger compressor wheel. 1. A supercharger comprising:a first compressor having a first compressor wheel fixed on a rotatable shaft;a second compressor having a second compressor wheel fixed on the rotatable shaft; anda mechanical linkage for transmitting power from a running internal combustion engine to the rotatable shaft to drive the compressor wheels.2. The supercharger of claim 1 , further comprising an air inlet for the first compressor and an air inlet for the second compressor claim 1 , wherein the air inlet for the first compressor is parallel with the air inlet for the second compressor.3. The supercharger of claim 1 , further comprising an air outlet for the first compressor and an air outlet for the second compressor claim 1 , wherein the air outlet for the first compressor is parallel with the air outlet for the second outlet.4. The supercharger of claim 1 , wherein the first compressor has a first housing defining a first volute and the second compressor has a second housing defining a second volute claim 1 , wherein the first and second volutes are substantially mirror images with respect to a plane bisecting the axial direction of the shaft.5. The supercharger of claim 1 , wherein the first compressor wheel is substantially a mirror image of the second compressor wheel with respect to a plane bisecting the axial direction of the shaft.6. The supercharger of claim 2 , further comprising an air outlet for the first compressor and an air outlet for the second compressor claim 2 , wherein the air outlet for the first compressor is parallel with the air outlet for the second outlet.7. The supercharger of claim 6 , wherein the first ...

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03-03-2016 дата публикации

Internal combustion engine system

Номер: US20160061102A1
Автор: Satoshi Sugiyama
Принадлежит: Toyota Motor Corp

An internal combustion engine system includes: a turbosupercharger having a turbo-compressor arranged in a first intake passage; a throttle valve provided on a downstream side relative to the turbo-compressor; a second intake passage that bypasses the turbo-compressor; and an electric supercharger in which a compressor wheel disposed in the second intake passage is driven by an electric motor. When a request to decelerate the internal combustion engine is issued during driving of the compressor wheel by the electric motor, driving of the compressor wheel by the electric motor is stopped before the throttle valve starts a valve closing operation, and the intake bypass valve opens at or after a time at which a valve closing operation of the throttle valve starts.

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03-03-2016 дата публикации

VAPOR RETURN SYSTEM OF A FUEL VAPOR COLLECTING TANK

Номер: US20160061124A1
Автор: PFLUG Arno, ZEISS Joeran
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A vapor return system of a fuel vapor collecting tank includes a vapor outlet line with a first stop valve, which is arranged in the vapor outlet line of the fuel vapor collecting tank. A first vapor return branch is arranged between the vapor outlet line of the fuel vapor collecting tank and a charge air duct of a compressor in a turbocharger. A second vapor return branch is arranged between the vapor outlet line of the fuel vapor collecting tank and a fresh air suction duct of the compressor of the turbocharger. The first vapor return branch is connected by a first check valve to the charge air duct. The second vapor return branch is connected by a second check valve to a suction inlet of a venturi nozzle situated in a bypass line between the charge air duct and fresh air suction duct via a second stop valve. 112-. (canceled)13. A vapor return system comprising:a fuel vapor collecting tank having a vapor outlet line;a first stop valve arranged in the vapor outlet line;a first vapor return branch between the vapor outlet line and a charge air duct of a compressor of a turbocharger;a second vapor return eh between the vapor outlet line and a fresh air suction duct of the compressor;wherein the first vapor return branch is connected by a first check valve to the charge air duct; andwherein the second vapor return branch is connected by a second check valve to a suction inlet of a Venturi nozzle situated in a bypass line between the charge air duct and fresh air suction duct via a second stop valve.14. The vapor return system according to claim 13 , further comprising a throttle flap arranged in the charge air duct claim 13 , and wherein the first vapor return branch is connected with the charge air duct downstream from the throttle flap.15. The vapor return system according to claim 13 , further comprising an engine control module operably coupled to the first and second stop valves by way of control lines.16. The vapor return system according to claim 13 , further ...

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03-03-2016 дата публикации

AIR SUPPLY CONCEPTS TO IMPROVE EFFICIENCY OF VCRC ENGINES

Номер: US20160061161A1
Автор: COWANS Kenneth W.
Принадлежит:

The air supply to internal combustion engines using variable compression ratio and variable fuel supply VCRC, is improved. The improvements involve increasing thermal efficiency and/or reducing production of pollutants by this engine. The improvements can also be used with other engines that are regulated by fuel supply such as two-stroke diesel engines. These improvements are directed to engines in two basic categories; those with mechanical blowers only and those with turbo charging. 119-. (canceled)20. In a two-stroke internal combustion engine of the type in which output torque is controlled by fuel delivery and in which pollutants are minimized , while efficiency is enhanced by starting sequential combustion of fuel and air in a cyclically varying expansion volume comprising a device to initiate ignition for a first phase of combustion with a substantially uniform mixture of the fuel and air , enough richer than stoichiometric to suppress the formation of oxides of nitrogen , with said cyclically varying expansion volume containing substantially all the fuel to be burned in one cycle together with only some of the air in one cycle , and with the subsequent combining of the combustion products of said first phase of combustion with all the remaining air in said one cycle to substantially complete the combustion of all the fuel in a second phase of combustion , the two-stroke internal combustion engine including:a. a blower providing air flow to said engine;b. a coupling driving said blower, said engine, said coupling being usable to control a ratio of a rotational speed of said engine to a rotational speed of said blower;c. a controllable throttle valve in the air flow out of said blower to said engine;d. a passage between the air flow out of said controllable throttle valve and the exterior air;e. a controllable vent valve located at an end of said passage remote from said controllable throttle valve, said controllable vent valve normally being closed; andf. a ...

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03-03-2016 дата публикации

AIR INTAKE CHAMBER FOR SADDLED VEHICLE

Номер: US20160061162A1
Принадлежит:

An air intake chamber is disposed at a location downstream of a supercharger and upstream of a throttle body. The air intake chamber serves to accumulate an intake air pressurized by the supercharger. This air intake chamber includes a confronting portion, which has an outlet and overlaps the throttle body, and a connecting portion that connects between the confronting portion and a discharge port of the supercharger. The connecting portion has an outlet side opening set to be larger than an inlet side opening thereof. 1. An air intake chamber for a saddle-riding type vehicle , which chamber is disposed downstream of a discharge port of a supercharger , which is operable to pressurize and supply an intake air to an engine , and upstream of a throttle body to control the amount of intake air to be supplied to an air intake port of the engine , which chamber comprises:a confronting portion having an outlet of the air intake chamber and facing the throttle body; anda connecting portion to connect the confronting portion and the discharge port of the supercharger, the connecting portion having an outlet side opening that is set to be larger than an inlet side opening, whereinthe connecting portion has a transverse width that gradually increases from the inlet side opening towards the outlet side opening.2. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which:the outlet side opening of the connecting portion has a widthwise dimension that is set to the same dimension as a widthwise dimension of the confronting portion; andthe inlet side opening of the connecting portion has a widthwise dimension that is set to the same dimension as a diameter of the discharge port of the supercharger.3. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which the discharge port of the supercharger is disposed at a location separated rearwardly of the confronting portion.4. The air intake chamber for the saddle-riding ...

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03-03-2016 дата публикации

AIR INTAKE CHAMBER FOR SADDLED VEHICLE

Номер: US20160061163A1
Принадлежит:

A motorcycle includes a supercharger to pressurize an intake air and supplying it to a combustion engine and an air intake chamber disposed downstream of the supercharger. The air intake chamber is made of a metallic material and has a capacity of an interior space thereof which is within the range of three to eight times the displacement of the combustion engine. The dimension from an upstream end portion on an inlet side of the interior space of the air intake chamber to a downstream end portion on an outlet side of the interior space of such air intake chamber is chosen to be three or more times the inner diameter of an outlet. 1. An air intake chamber for a saddle-riding type vehicle disposed downstream of a centrifugal type supercharger having an impeller for pressurizing an intake air and configured to supply it to a combustion engine:in which a capacity of an interior space is two or more times a displacement of the combustion engine.2. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which the capacity of the interior space is within the range of three to eight times the displacement of the combustion engine.3. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which a dimension from an upper end portion on an inlet side of the interior space to a downstream end portion on an outlet side thereof is larger than three times an inner diameter of an outlet.4. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which the air intake chamber is made of a metallic material.5. The air intake chamber for the saddle-riding type vehicle as claimed in claim 1 , in which the air intake chamber is disposed upstream of a throttle body claim 1 ,in which the supercharger is driven by an output of a four cycle combustion engine, andin which the air intake chamber has an interior space defined therein, the interior space of the air intake chamber having a capacity V that is ...

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03-03-2016 дата публикации

AIR INTAKE CHAMBER FOR SADDLED VEHICLE

Номер: US20160061165A1
Принадлежит:

An air intake chamber for a motorcycle is disposed downstream of a supercharger, for pressurizing and supplying an intake air to an engine, and upstream of a throttle body, for controlling the amount of the intake air to be supplied to an air intake port of the engine. The air intake chamber serves to accumulate the high pressure intake air discharged from the supercharger. The air intake chamber is provided with an injector, which has a fuel injecting port positioned at a location displaced from an axis of an outlet of the air intake chamber. 1. An air intake chamber for a saddle-riding type vehicle , which chamber is disposed downstream of the supercharger and upstream of a throttle body , which supercharger is operable to pressurize and supply an intake air to a combustion chamber , which throttle body is operable to control the amount of the intake air to be supplied to an air intake port of the combustion engine , which chamber accumulates the pressurized intake air and comprises:an injector having a fuel injection port defined therein at a location upstream side of an outlet of the air intake chamber and displaced from an axis of the outlet wherein:the air intake chamber is disposed diagonally upwardly and rearwardly of a cylinder block of the combustion engine;the injector is disposed on an upper surface of the air intake chamber; andan air intake duct for guiding an incoming wind, then flowing forwardly of the combustion engine, towards the supercharger passes laterally of the cylinder block.2. The air intake chamber for a saddle-riding type vehicle as claimed in claim 1 , in which:the injector is disposed on an upper surface of the air intake chamber; andthe injector having an axis that is disposed inclined relative to the axis of the outlet.3. The air intake chamber for a saddle-riding type vehicle as claimed in claim 2 , in which:an inlet is defined in a rear portion of the air intake chamber and the outlet is defined in a front portion of the air intake ...

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