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UNION BALL, FOR EXAMPLE FOR ANTI-BALANCING BAR OF CIRCULATING VEHICLE.

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Fine grained access barring of aggressive cellular devices

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Generation of training examples for training automatic speech recognizers

Номер патента: US20240161733A1. Автор: Beat Buesser,Ngoc Minh Tran,Hessel TUINHOF. Владелец: International Business Machines Corp. Дата публикации: 2024-05-16.

Using anti-context examples for updating automatic speech recognition systems

Номер патента: WO2024054228A1. Автор: Mingqing Chen,Khe Chai Sim,Rajiv Mathews,Dan ZIVKOVIC,Mason CHUA. Владелец: Google LLC. Дата публикации: 2024-03-14.

Updating training examples for artificial intelligence

Номер патента: US12099908B2. Автор: Jayant Sivarama KRISHNAMURTHY,Dmitrij PETTERS,Joshua James Clausman. Владелец: Microsoft Technology Licensing LLC. Дата публикации: 2024-09-24.

Dual union ball drain valve with T-flow adjustability

Номер патента: US11898643B1. Автор: Christopher W. Mason. Владелец: Nibco Inc. Дата публикации: 2024-02-13.

Dual union ball drain valve with t-flow adjustability

Номер патента: CA3197637A1. Автор: Christopher W. Mason. Владелец: Nibco Inc. Дата публикации: 2024-06-28.

HYDRAULIC UNION BALL TUBE WITH LEAK DIFFUSION

Номер патента: US20170058851A1. Автор: COLVIN Corey Jay. Владелец: . Дата публикации: 2017-03-02.

Tee union ball drain valve

Номер патента: US11421791B2. Автор: Christopher W. Mason. Владелец: Nibco Inc. Дата публикации: 2022-08-23.

Tee union ball drain valve

Номер патента: CA3115368A1. Автор: Christopher William MASON. Владелец: Nibco Inc. Дата публикации: 2022-05-24.

Metallic vapor condenser capable of circulating a liquid metal

Номер патента: CA2038767C. Автор: Toshio Matsuoka. Владелец: Sumitomo Heavy Industries Ltd. Дата публикации: 2002-01-29.

System and method of circulating a gas in an automated grid based storage and retrieval system

Номер патента: US20230324056A1. Автор: Trond Austrheim,Ivar Fjeldheim. Владелец: Autostore Technology AS. Дата публикации: 2023-10-12.

METHOD FOR PREPARING C ^ –C ^ 1 OLEFIN MIXTURE The invention relates to a process for producing a mixture of C4 – Ce olefins with a predominance of alpha isomers, which are widely used as monomers and intermediates in the synthesis of plastics and rubber. —Cb by sodimerization of ethylene with propylene at a temperature of 100–160 ° C and a pressure of 40 atm in the presence of trialkylaluminium, for example, triethylaluminium or diethylaluminium chloride, and a transition metal compound, for example, nickel chloride or its oxide. The known method relates to a low yield of alpha-olefins and an insufficiently high degree of conversion of propylene. In order to increase the yield of alpha-olefins, it is proposed to use nickel palmitate as a compound of the transition metal. Example. 250 ml (180 g) of a catalyst consisting of a 3% solution of triethylalu-5 mini in n-decape and nickel palmitate (A1: N1 = 500: 1) is placed in a 2 l autoclave pre-freed from moisture and oxygen, equipped with a magnetic stirrer (1400 rpm). Then 235 g10 propylene (99.5% purity) and 157 g ethylene (99.8% purity) are fed. The molar ratio is 1: 1. Heated to the desired temperature and stirred for 20 hours. Together with alpha-olefins C4 — Sb, a small amount of al-15 fa-olefins Cs — Ce is formed.

Номер патента: SU418462A1. Автор: И. И. Письман Г. В. Васильковска Е. И. Жорницка изобретени М. А. Далин. Владелец: . Дата публикации: 1974-03-05.

Improvement of circulation water cultivation system

Номер патента: TW516380U. Автор: Li-Jung Shiau. Владелец: King Car Biotechnology Ind Co. Дата публикации: 2003-01-01.

Method to enhance operation of circulating mass reactor and method to carry out such reactor

Номер патента: US09470416B2. Автор: Seppo Ruottu. Владелец: Endev Oy. Дата публикации: 2016-10-18.

Method of and apparatus for the degasification of circulation systems for liquids

Номер патента: CA1132060A. Автор: Franciscus Roffelsen. Владелец: Spiro Research NV. Дата публикации: 1982-09-21.

Refrigerant circulating apparatus and method of circulating refrigerant

Номер патента: US20180363968A1. Автор: Minoru Yoshikawa,Masaki Chiba,Hisato Sakuma. Владелец: NEC Corp. Дата публикации: 2018-12-20.

Fuel supply device of circulating fluidized bed boiler

Номер патента: US20220018533A1. Автор: Kyu Jong Kim,Jin Yeoung JEONG. Владелец: Hyundai Heavy Industries Power Systems Co Ltd. Дата публикации: 2022-01-20.

Fuel supply device of circulating fluidized bed boiler

Номер патента: US12038171B2. Автор: Kyu Jong Kim,Jin Yeoung JEONG. Владелец: Hyundai Heavy Industries Power Systems Co Ltd. Дата публикации: 2024-07-16.

Blowby gas circulation system and method of circulation

Номер патента: CA2434140C. Автор: Yasuhiro Kaneko,Kazushi Tomita. Владелец: Fuji Jukogyo KK. Дата публикации: 2008-01-15.

Operation diagnostic method of circulating fluidized bed boiler, and operation diagnostic device

Номер патента: MY163247A. Автор: Kaoru Tsukane. Владелец: Sumitomo Heavy Industries. Дата публикации: 2017-08-30.

Operation diagnostic method of circulating fluidized bed boiler, and operation diagnostic device

Номер патента: PH12014502506B1. Автор: Tsukane Kaoru. Владелец: Sumitomo Heavy Industries. Дата публикации: 2014-12-22.

LUBRICANT CIRCULATION SYSTEM AND METHOD OF CIRCULATING LUBRICANT IN A GAS TURBINE ENGINE

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Refrigerant circulating apparatus and method of circulating refrigerant

Номер патента: US20180363968A1. Автор: Minoru Yoshikawa,Masaki Chiba,Hisato Sakuma. Владелец: NEC Corp. Дата публикации: 2018-12-20.

INSTALLATION OF CONDITIONS FOR THE CIRCULATION OF CIRCULATION

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Refrigerator having cold air circulating apparatus and control method of circulating cold air

Номер патента: CN101484765B. Автор: 郑学载. Владелец: Daewoo Electronics Co Ltd. Дата публикации: 2011-02-23.

INSTALLATION OF CONDITIONS FOR THE CIRCULATION OF CIRCULATION

Номер патента: FI61954B. Автор: Markku Kari. Владелец: Rakennusvalmiste Oy. Дата публикации: 1982-06-30.

Material circulation air control system of circulating fluidized bed boiler

Номер патента: CN112443834B. Автор: 钟文琪,崔颖,刘雪娇. Владелец: SOUTHEAST UNIVERSITY. Дата публикации: 2022-09-20.

Hvac system and method of circulating flammable refrigerant

Номер патента: CA3055139A1. Автор: Rakesh Goel,Umesh Gokhale. Владелец: Lennox Industries Inc. Дата публикации: 2020-04-17.

Uniformity Circulating apparatus of Circulation type Natural air Dryer

Номер патента: KR200346140Y1. Автор: 한종규. Владелец: 한성공업 주식회사. Дата публикации: 2004-03-31.

Baking drawer and method of circulating air within the baking drawer

Номер патента: US11968984B2. Автор: Brian P. Chatot,Lauren E. Bull,Pallavi Saha. Владелец: Whirlpool Corp. Дата публикации: 2024-04-30.

ATTACHING NEEDLE SUPPORTS, FOR EXAMPLE BARS ON RETAINING RINGS, FOR EXAMPLE OF A ROUND COMB FROM COMBING MACHINES

Номер патента: BE745539A. Автор: . Владелец: Staedtler & Uhl. Дата публикации: 1970-07-16.

METHOD TO ENHANCE OPERATION OF CIRCULATING MASS REACTOR AND METHOD TO CARRY OUT SUCH REACTOR

Номер патента: US20130323654A1. Автор: RUOTTU Seppo. Владелец: Endev Oy. Дата публикации: 2013-12-05.

HVAC SYSTEM AND METHOD OF CIRCULATING FLAMMABLE REFRIGERANT

Номер патента: US20210140662A1. Автор: Gokhale Umesh,GOEL Rakesh. Владелец: . Дата публикации: 2021-05-13.

HVAC SYSTEM AND METHOD OF CIRCULATING FLAMMABLE REFRIGERANT

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FURNACE OF CIRCULATING FLUIDIZED BED BOILER HAVING VARIABLE CROSS-SECTION WATER-COOLED COLUMN

Номер патента: US20160178191A1. Автор: Gao Ming,WANG Xiaofang,WANG Dongyu,Lv Qinggang. Владелец: . Дата публикации: 2016-06-23.

NOSE CONE ASSEMBLY AND METHOD OF CIRCULATING AIR IN A GAS TURBINE ENGINE

Номер патента: US20160298540A1. Автор: Suciu Gabriel L.,Hipsky Harold W.,Chandler Jesse M.,Zywiak Thomas M.. Владелец: . Дата публикации: 2016-10-13.

THERMAL MANAGEMENT SYSTEM AND METHOD OF CIRCULATING AIR IN A GAS TURBINE ENGINE

Номер патента: US20160298544A1. Автор: Suciu Gabriel L.,Chandler Jesse M.. Владелец: . Дата публикации: 2016-10-13.

In Vitro capture and analysis of circulating tumor cells

Номер патента: US09952212B2. Автор: George Martin,Steven Soper,Makgorzata WITEK,Jen Jen Yeh. Владелец: Roche Molecular Systems Inc. Дата публикации: 2018-04-24.

Methods and apparatus for the isolation and enrichment of circulating tumor cells

Номер патента: US09733165B2. Автор: Daniel T. Chiu,Jason S. Kuo. Владелец: UNIVERSITY OF WASHINGTON. Дата публикации: 2017-08-15.

WASHING MACHINE WITH CIRCULATING WATER SUPPLY PIPE AND MANUFACTURING METHOD OF CIRCULATING WATER SUPPLY PIPE

Номер патента: US20200283945A1. Автор: KANG Dongwon,LEE HyeonSik,Kim Gyuri. Владелец: . Дата публикации: 2020-09-10.

Circulation type multi-car elevator and control method of circulation type multi-car elevator

Номер патента: JP2022102576A. Автор: 樹 志村,Itsuki SHIMURA. Владелец: HITACHI LTD. Дата публикации: 2022-07-07.

Traction arrangement for angularly rotatable sweep auger of circulator grain bins

Номер патента: USRE29309E. Автор: William C. Patterson. Владелец: . Дата публикации: 1977-07-19.

Elevator circulating system having stacked elevator at end of circulating track

Номер патента: KR101378574B1. Автор: 남 영 김. Владелец: 남 영 김. Дата публикации: 2014-03-25.

Power transfer system of circulating type gantry crane

Номер патента: AU4784800A. Автор: Man Yop Han. Владелец: Individual. Дата публикации: 2000-12-05.

Detection method and detection device of circulating tumor cell

Номер патента: US20200284796A1. Автор: Yoshio Ogawa,Hikaru Ishii,Michio NAOE. Владелец: Showa University. Дата публикации: 2020-09-10.

A METHOD FOR REMOVING A MODEL COMPOSITION OF A CERAMIC SHAPED FORM IN THE MANUFACTURE OF CASTING ON A MOLDED MODELS1 improving the quality of ceramic shells and sanitary-hygienic working conditions. There is a well-known method of melting a model composition from ceramic shells in liquid Yu media, according to which Which medium for melting, which is simultaneously a heat carrier, is known a composition for removing model material 1 [from ceramic forms, including a mixture of glycols and 15 carbitol. A well-known method is that models are made of a low-melting model material (for example, composition P-3) and collect them in blocks. On the assembled model blocks, apply the required number of layers of a refractory coating based on a binder hydrolyzed solution of ethyl silicate and with them in an exothermic ammonia atmosphere. After the act !! All the layers of the block — o are transported by the condom to the bath for the smelting of models. when heated to a temperature above the melt of the moling composition with a liquid, for example, a mixture of glycols and carbitol, the blocks in this mixture are kept for the time necessary for the complete removal of the models from the cavity, and then the forms are transported to the next operation. The disadvantage of this method is the following: —When using shell forms of glass glass or a hydrolyzed solution of ethyl silicate as a binder, around the shell form, immersed in a model bath, forms with an area with high pH (pH). If the models are melted in high-boiling organic liquids, such as mixtures of glycols and carb'Itol, then at high pH the medium will produce slow-burning tar-like products, which accumulate the oxidation products of the bath material, as well as sand particles, etc. Getting into the internal cavity of the mold, these products cause incomplete burning of combustible during annealing, resulting in the rejection of castings due to insufficient heat, gas shells and clogs. At the time of removing the ceramic shells from the installation, they have a high temperature y (about SO' ^ C) and reduced proch-

Номер патента: SU501835A1. Автор: Юрий Лейбович Перевозкин,Анатолий Арамович Мкртычьян,Виталий Филиппович Жарков,Юрий Андреевич Гаюн,Михаил Дмитриевич Степанович,Клавдия Васильевна Пониделко,Виктор Иванович Могутов,Тодеуш Антонович Школяр,Вадим Михайлович Коган. Владелец: Ростовский-на-Дону научно-исследовательский институт технологии машиностроения. Дата публикации: 1976-02-05.

LIQUID EJECTING APPARATUS AND METHOD OF CIRCULATING LIQUID

Номер патента: US20130241979A1. Автор: Iwata Yuji. Владелец: SEIKO EPSON CORPORATION. Дата публикации: 2013-09-19.

NON-INVASIVE MONITORING CANCER USING INTEGRATED MICROFLUIDIC PROFILING OF CIRCULATING MICROVESICLES

Номер патента: US20170001197A1. Автор: ZENG Yong,HE Mei,GODWIN Andrew. Владелец: . Дата публикации: 2017-01-05.

APPARATUS FOR PERFORMING CONTACTLESS OPTICALLY-INDUCED DIELECTROPHORESIS FOR SEPARATION OF CIRCULATING TUMOR CELLS

Номер патента: US20200009581A1. Автор: Wu Min-Hsien. Владелец: . Дата публикации: 2020-01-09.

APPARATUS FOR PERFORMING CONTACTLESS OPTICALLY-INDUCED DIELECTROPHORESIS FOR SEPARATION OF CIRCULATING TUMOR CELLS

Номер патента: US20200016606A1. Автор: Wu Min-Hsien. Владелец: . Дата публикации: 2020-01-16.

APPARATUS FOR PERFORMING CONTACTLESS OPTICALLY-INDUCED DIELECTROPHORESIS FOR SEPARATION OF CIRCULATING TUMOR CELLS

Номер патента: US20200016607A1. Автор: Wu Min-Hsien. Владелец: . Дата публикации: 2020-01-16.

APPARATUS FOR PERFORMING CONTACTLESS OPTICALLY-INDUCED DIELECTROPHORESIS FOR SEPARATION OF CIRCULATING TUMOR CELLS

Номер патента: US20200030818A1. Автор: Wu Min-Hsien. Владелец: . Дата публикации: 2020-01-30.

Non-invasive monitoring cancer using integrated microfluidic profiling of circulating microvesicles

Номер патента: US20170065978A1. Автор: Zheng Zhao,Mei He,Yong Zeng. Владелец: Kansas State University. Дата публикации: 2017-03-09.

FILTRATION OF CIRCULATING TUMOR CELLS FOR THERAPUTIC PURPOSES

Номер патента: US20170080142A1. Автор: Biran Oded. Владелец: . Дата публикации: 2017-03-23.

QUALITY ASSESSMENT OF CIRCULATING CELL-FREE DNA USING MULTIPLEXED DROPLET DIGITAL PCR

Номер патента: US20180105864A1. Автор: Murtaza Muhammed,Contente-Cuomo Tania. Владелец: . Дата публикации: 2018-04-19.

ISOLATION AND DETECTION OF CIRCULATING TUMOR CELLS (CTCs)

Номер патента: US20170128939A1. Автор: Abdolahad Mohammad,Hosseini Seiedali,Zanganeh Somayeh. Владелец: . Дата публикации: 2017-05-11.

Extraction of Circulating Nucleic Acids

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QUALITY ASSESSMENT OF CIRCULATING CELL-FREE DNA USING MULTIPLEXED DROPLET DIGITAL PCR

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DETECTION METHOD AND DETECTION DEVICE OF CIRCULATING TUMOR CELL

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Isolation of Circulating Tumor Cells Using Electric Fields

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Device and method for in vivo noninvasive magnetic manipulation of circulating objects in bioflows

Номер патента: US20150351640A1. Автор: Vladimir Pavlovich Zharov. Владелец: University of Arkansas. Дата публикации: 2015-12-10.

SAMPLE MEASURING APPARATUS AND METHOD OF CIRCULATING AIR IN REAGENT STORAGE

Номер патента: US20200355712A1. Автор: Kawamoto Yutaka,KUROIWA Tomohiro,KAIDA Shingo. Владелец: SYSMEX CORPORATION. Дата публикации: 2020-11-12.

Bifunctional small molecules to target the selective degradation of circulating proteins

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Use of circulator in lidar system

Номер патента: EP4305451A1. Автор: Mehdi Asghari,Bradley Jonathan Luff,Prakash Koonath,Vala Fathipour. Владелец: SILC Technologies Inc. Дата публикации: 2024-01-17.

Use of circulator in lidar system

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Methods for characterization of circulating tumor cells

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An in vitro diagnostic method for cancer by means of circulating, cell-free dna

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Detection and analysis of circulating tumor cells

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Detection and analysis of circulating tumor cells

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Detection of circulating tumor cells using tumor-targeted nir agents

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Systems and methods for capture of circulating free dna

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Bifunctional small molecules to target the selective degradation of circulating proteins

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Detection and analysis of circulating tumor cells

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Post mortem reconstitution of circulation

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Liquid bubble separator of circulating water system

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Methods of detecting a neurological condition via analysis of circulating phagocytes

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Electrochemical immuno-biosensor and method for detection of circulating protein biomarkers

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Method for in vitro separation culture of circulating tumor cells

Номер патента: CN114921414A. Автор: 吴少波,许冰. Владелец: Beijing Hepei Biotechnology Co Ltd. Дата публикации: 2022-08-19.

A kind of the pump drive-type circulation capture system and its control method of circulating tumor cell

Номер патента: CN110437971A. Автор: 王玮,浑婷婷,刘姚萍. Владелец: PEKING UNIVERSITY. Дата публикации: 2019-11-12.

Measurement of the speed of circulation in circulating fluidized beds

Номер патента: DE19745121C2. Автор: Volker Blank,Klaus Elgeti,Manfred Buecheler. Владелец: Bayer AG. Дата публикации: 2001-06-13.

CIRCUIT FOR THE CIRCULATION OF CIRCULATIONS

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Bifunctional Small Molecules to Target the Selective Degradation of Circulating Proteins

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Aviary walkway and ventilation system and method of circulating air in an aviary

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Method for the enrichment of circulating tumor dna

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Method for the enrichment of circulating tumor dna

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Bifunctional small molecules to target the selective degradation of circulating proteins

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An in vitro diagnostic method for cancer by means of circulating, cell-free dna

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Bifunctional small molecules to target the selective degradation of circulating proteins

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System for example-based motion synthesis

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Method of circulating water through the twyers and coolers of blast-furnaces.

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Use of nanopore sequencing for determining the origin of circulating dna

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Laundry processor by use of circulating water

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A method for producing benzodiazepine 1 derivatives, a method for producing new phosphorylated benzodiazepine derivatives with valuable pharmacological properties is proposed. The method using the known benzodiazepine reaction chemistry makes it possible to obtain new patterns that have been used by other patterns, it is a pattern, it is a pattern, it was a pattern, it was a pattern, it was a pattern, it was a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a pattern, a heading, a hint, a diaphragm, a, etc. to obtain 10-benzodiazepine derivatives of the general formula Cs denotes a linear or branched alkyl radical containing 1–3 carbon atoms; n is an integer 1— , is that o-aminobenzophenone of the general formula 15 (Oi ^ kPlRslr 'NH OO • R where RI and R2 represent the same or different substituents and denote a hydrogen atom, halogen, nitro group or trifluoromethyl radical, in addition, Rz can also be a linear or branched alkyl radical containing 1-6 carbon atoms, where RI, RZ, Rs and n are given, 20 interacts with an aminoacetic acid derivative, mainly ether, or is sequentially reacted with an acid halide slots, then cyclized with ammonia and dissolved-25. The desired product is isolated in the free state or in the form of a salt by known methods. The cyclization is carried out, for example, with pyridine. Example. 6.4 g of 5-chloro-2- (L-dimethyloxo-30 phosphinylmethyl) -aminobenzophenone (t. Pl.

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METHOD FOR PREPARING THE SUBSTITUTED ISOTHYOL1 UCHEVIN1 The invention relates to the method of obtaining the derivatives of amides, in particular the substituted isothiourea, which has pharmacological activity. The proposed method for producing a substituted isothiourea of the general formula .- ^^ - (^ E,}, t ^ '(^^^^' "X_LASR ^ where X is hydrogen, lower alkyl, amino or lower alkylthio; b ^ 1; n - 2-5; R— hydrogen, Ci — 4-, alkyl, aryl, or aralkyl; R * is saturated or unsaturated Ci — Cb-alkyl or (CH2) mZ, where m is 1-3; Z is substituted or unsubstituted aryl, hydroxyl, carboxyl, alkyl ^ mino or cyano group; R and R ^ together can form a 5-membered ring; 2A together with the adjacent carbon and nitrogen atoms is an unsaturated 5-6 membered heterocyclic ring, based on the well-known alkylation reaction of group 5 - C = S and consists in the fact that the thiourea of the general formula /? NK. "South": '™' ^^ Agde A, X, B, n and R have the above meanings, are treated with a compound of general 15 of the formula R'Y, where R 'is as indicated above; Y is halo or hydroxyl, and the target is isolated the product is in the form of a salt or is converted into the base by known methods. 20 The starting thiourea is used as an acid addition salt, for example, with a halogen-hydrogen, sulfuric, picric or maleic acid, or is carried out in the presence of one of these acids. organic solvent, such as ethyl alcohol, dimethylformamide, or acetone. uyuschies isothiourea addition salts converted to the base in the processing 30 for example, potassium carbonate.

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USE OF CIRCULATING SERUM TROP-2 AS NEW TUMOR BIOMARKER

Номер патента: US20180328928A1. Автор: GUERRA Emanuela,ALBERTI Saverio,TREROTOLA Marco. Владелец: . Дата публикации: 2018-11-15.

AUTOMATED ANALYSIS OF CIRCULATING TUMOR CELLS

Номер патента: US20160349262A1. Автор: Pestano Gary,Garsha Karl,Otter Michael,Nagy Alexandra Dea,Dittamore Ryan,Yun Chol Steven. Владелец: . Дата публикации: 2016-12-01.

AVIARY WALKWAY AND VENTILATION SYSTEM AND METHOD OF CIRCULATING AIR IN AN AVIARY

Номер патента: US20190327941A1. Автор: Rust Marcus D.,Dart Joseph M.,Hurd David. Владелец: . Дата публикации: 2019-10-31.

ASSAY TO MEASURE THE LEVELS OF CIRCULATING DEMETHYLATED DNA

Номер патента: US20160369340A1. Автор: Akirav Eitan Moshe. Владелец: . Дата публикации: 2016-12-22.

ISOLATION, DETECTION, DIAGNOSIS AND/OR CHARACTERIZATION OF CIRCULATING TROP-2-POSITIVE CANCER CELLS

Номер патента: US20190369103A1. Автор: GOLDENBERG David M.,HANSEN Hans J.,Chang Chien-Hsing. Владелец: . Дата публикации: 2019-12-05.

Method for utilizing purging water of circulation system

Номер патента: RU2279409C2. Автор: Олег Юрьевич Кузнецов. Владелец: Олег Юрьевич Кузнецов. Дата публикации: 2006-07-10.

Brush, for example for tissue cleaning or sampling

Номер патента: RU2400150C2. Автор: Мейндерт Дюрк ЗВАРТ. Владелец: Мдз Бехер Б.В.. Дата публикации: 2010-09-27.

Suspension bar of sprayer

Номер патента: RU2594973C1. Автор: Степан Тимофеевич Дричик. Владелец: Степан Тимофеевич Дричик. Дата публикации: 2016-08-20.

Method for wasteless use of bar of soap and bar of soap for effectuating the same

Номер патента: RU2201438C2. Автор: В.Н. Лескин. Владелец: Лескин Виктор Николаевич. Дата публикации: 2003-03-27.

Device for Applying Tunic on Medicinal Bar of Fixed Dimensions

Номер патента: GEP19971083B. Автор: Lankinen Pekka,Helle Timo,Hartzell Rolf,Nieminen Pekka. Владелец: Leiras Oy. Дата публикации: 1997-10-27.

Improvements relating to the Handle-bars of Bicycles and the like.

Номер патента: GB189722125A. Автор: Owen Jones. Владелец: Individual. Дата публикации: 1898-07-30.

An Improved Combination Appliance to Hang Upon the Bars of Fire Places.

Номер патента: GB189718522A. Автор: George Michael Cam,Maurice Cam. Владелец: Individual. Дата публикации: 1897-09-18.

Improvements in and relating to Handle Bars of Velocipedes and the like.

Номер патента: GB190815959A. Автор: . Владелец: Rudge Whitworth Ltd. Дата публикации: 1909-07-22.

Improvements in Spring Supports for the Seats and Steering Handle-bars of Velocipedes and the like.

Номер патента: GB190315484A. Автор: Joseph Sutton Withers. Владелец: Individual. Дата публикации: 1903-09-03.

Improvements in Balls for Use in Golf and other Games.

Номер патента: GB189817554A. Автор: Alfred Julius Boult. Владелец: Individual. Дата публикации: 1898-10-29.

Improvements in the Construction of Golf Balls and Balls for other Purposes.

Номер патента: GB190302399A. Автор: Charles Thomas Kingzett. Владелец: Individual. Дата публикации: 1903-12-03.

Improvements in Balls for use in Golf and other Games.

Номер патента: GB190515386A. Автор: Eduard Salomon Ali Cohen. Владелец: Individual. Дата публикации: 1906-04-05.

Improvements in Balls for Playing Golf and other Games

Номер патента: GB190212477A. Автор: Eleazer Kempshall. Владелец: Individual. Дата публикации: 1902-07-03.

Improvement in Balls for Golf, Billiards, and Analogous Games.

Номер патента: GB190210453A. Автор: Eleazer Kempshall. Владелец: Individual. Дата публикации: 1902-07-24.

Porcelain ball for catalyst bed support

Номер патента: MY186355A. Автор: Bin Yahya Hamdan,Binti Ahmad Aspaniza,Abdul Rois Bin Abdul Mois Hj,Kori Bin Mohammad Hj. Владелец: Rakannusa Corp M Sdn Bhd. Дата публикации: 2021-07-16.

Glass Balls for Ball Bearings for Bicycles, Carriages, and Similar Purposes.

Номер патента: GB189710428A. Автор: Wilton Brooke. Владелец: Individual. Дата публикации: 1897-07-03.

A New or Improved Gauntlet Device for the Handle Bars of Cycles.

Номер патента: GB189702382A. Автор: John Cassell. Владелец: Individual. Дата публикации: 1897-12-18.

Improvements in, and relating to, Balls for use in Playing Golf and other like Games.

Номер патента: GB190406172A. Автор: William Henry Southon,Harold Southon. Владелец: Individual. Дата публикации: 1905-01-05.

Improvements in Balls for Playing Ping-pong or Table Tennis

Номер патента: GB190200060A. Автор: Horace Walter Dover. Владелец: Individual. Дата публикации: 1902-11-20.

Improvements in Balls for Golf and similar Games

Номер патента: GB190414701A. Автор: Robert Russell Landale Morgan. Владелец: Individual. Дата публикации: 1904-08-04.

Improvements in Balls for Use in Playing Polo and other like Games.

Номер патента: GB189909786A. Автор: Albert Altman,Thomas Binnie Drybrough. Владелец: Individual. Дата публикации: 1900-03-10.

Improvements in and relating to the Fire Bars of Furnaces.

Номер патента: GB190004077A. Автор: John Macdonald Henderson. Владелец: Individual. Дата публикации: 1901-01-12.

Improved Construction of Cushion for Lessening the Shocks on the Draw-bars of Railway Vehicles.

Номер патента: GB190326758A. Автор: John Parry Edmunds. Владелец: Individual. Дата публикации: 1904-07-14.

Improvements in and relating to Balls for use in Golf, Cricket and like Games.

Номер патента: GB190808113A. Автор: Robert Hunter. Владелец: Individual. Дата публикации: 1908-12-17.

A Captive Ball for Practising Football.

Номер патента: GB189725174A. Автор: Alfred Webb. Владелец: Individual. Дата публикации: 1898-10-29.

Manufacture of Balls for Games and Pastimes.

Номер патента: GB190303557A. Автор: . Владелец: SAMUEL EDWARD BAIN. Дата публикации: 1903-11-26.

Improvement in Balls for use in Golf and other Games

Номер патента: GB190523252A. Автор: Hans Hansen,Andrew Urquhart. Владелец: Individual. Дата публикации: 1906-07-26.

Giggle ball for puppies

Номер патента: AU201713354S. Автор: . Владелец: TFH Publications Inc. Дата публикации: 2017-06-15.

Hammer union ball valve

Номер патента: USD603017S1. Автор: Spencer M. Nimberger. Владелец: PGI International Ltd. Дата публикации: 2009-10-27.

Cross over coupling variation of circulator strip conductors

Номер патента: NZ500914A. Автор: Alexander Grigorie Schuchinsky,Gerald Leigh Therkleson. Владелец: Deltec Telesystems Internat Lt. Дата публикации: 2001-08-31.

Bifunctional small molecules to target the selective degradation of circulating proteins

Номер патента: WO2024227119A2. Автор: Gene M. Dubowchik,Wieslaw Kazmierski. Владелец: Biohaven Therapeutics Ltd.. Дата публикации: 2024-10-31.

Multi-zone reactor with contracted circulation cross section of circulation ring shell

Номер патента: CN218516676U. Автор: 陈孙艺. Владелец: Challenge Petrochemical Machinery Corp. Дата публикации: 2023-02-24.

A kind of circulating leaching mechanism and circulating leaching device

Номер патента: CN206334393U. Автор: 王芹,王国星. Владелец: Individual. Дата публикации: 2017-07-18.

Material circulating device of circulating fluid bed flue gas desulphurization system

Номер патента: CN101559321B. Автор: 韩旭,余福胜,李雄浩,于永合. Владелец: Wuhan Kaidi Electric Power Co Ltd. Дата публикации: 2011-06-15.

Circulating air inlet device of circulating fluidized bed boiler

Номер патента: CN214948982U. Автор: 刘成民,刘响飞. Владелец: Zhengzhou Donglin Protection Equipment Co ltd. Дата публикации: 2021-11-30.

Circulating air inlet device of circulating fluidized bed boiler

Номер патента: CN212914899U. Автор: 王成海,崔可德,蔡元振. Владелец: Zibo Guoyang Electric Power Technology Co ltd. Дата публикации: 2021-04-09.

Thrust structure of circulator and circulator

Номер патента: CN214944454U. Автор: 于艳翠,黄建平,陈云飞,刘茂龙,符渡. Владелец: Gree Electric Appliances Inc of Zhuhai. Дата публикации: 2021-11-30.

Post mortem reconstitution of circulation

Номер патента: CA2299964C. Автор: H. Edward Garrett Jr.,Robert D. G. Ferguson,J. Scott Williams. Владелец: Medical Education & Research Institute. Дата публикации: 2010-12-14.

Particle circulation device of circulating fluidized bed pre-reduction furnace

Номер патента: JP2659889B2. Автор: 和彦 佐藤,宏 板谷,照夫 金綱. Владелец: Kawasaki Steel Corp. Дата публикации: 1997-09-30.

A method for producing quinoline alkyl derivatives. The invention relates to a method for producing quinoline alkyl derivatives of the general formula where RI is alkyl; R2 is hydrogen or alkyl, and alkyl RI contains one carbon atom more than alkyl Rs, which are used in the chemical industry. Known methods for producing alkyl derivatives of quinoline by reacting anilines with carbonyl-containing compounds (for example, aldehydes, ketones) in the presence of various condensates , their and yush oxide, their agents require the use of hard-to-reach starting materials. The purpose of the invention — to improve the process technology — is achieved by the fact that a mixture of nitrobenzene and aliphatic alcohol of the general formula ROH, where R is Cz — Ce-alkyl, passed through an industrial vanadium catalyst (B-3) at 320–360 ° C, followed by isolation of the target product by known methods.5 Irimer 1. Synthesis of 2-methylquinoline (quinaldine). A mixture of 13 ml of nitrobenzene and 14 ml of ethyl alcohol is passed through a B-3 vanadium catalyst heated to 320 ° C, but partially activated by hydrogen for 1 hour at 350–380 ° C. An oily layer is separated from the catalyzate consisting of two layers, distilled, and 4.6 ml (35%) quinaldine are obtained, i.e. bale. 246-249 ° C, so pl. picra-15 and 191–192 ° C. Found,%: N 9.92; 10,13.CioHgN. Calculated,%: N 9.79. In Examples 2-5, tabulated, 20 experiments were carried out, as in Example 1, using in each case 13 ml of nitrobenzene and different amounts of alcohols and skips the reaction mixture is heated to a certain temperature vanadium catalyst B-3. 25 The results are shown in the table.

Номер патента: SU435239A1. Автор: . Владелец: Н. С. Козлов, В. Д. Пак, Л. В. Чуклинов , И. Н. Левашов Пермский сельскохоз йственный институт. Дата публикации: 1974-07-05.

METHOD OF CHOURNE a solution of ferro-synergistic potassium in alcohol alkali at O – 10 ° C. However, this copsule does not succeed in obtaining the heterocyclic analogs of hexaarylbimimide-3 OLI catches. The proposed method differs in that the original imidazole contains the residue of the heterocycle. As an alkaline medium, an emulsion of pyridium and aqueous alkali is used. This makes it possible to obtain heterylbimimidazolyls containing residues of nitrogen nitrogen heterocycles as substitutes. The method for preparing heterocyclic analogs of 2.2 ', 4,4'-5,5'-hexaarylbiimidazolyls of the general formula where RI is a residue of a six-membered nitrogen-containing heterocyclic group, you can use a group of nitrogen components of the formula, where the RI is a residue of a six-membered nitrogen-containing heterocyclic group, you can get a six-membered nitrogen-containing heterocyclic group, the residue of the six-membered nitrogen-containing heterocyclic group of the general formula where RI is a residue of a six-membered nitrogen-containing heterocyclic group, you can get a six-membered nitrogen-containing heterocyclic group of residues of the six-membered nitrogen-containing heterocyclic formula. and Rs is phenyl with different substituents, for example CH3, OCH3, Br, or residues of these heterocycles, is that 2,4,5-trisubstituted imidazole of the general formula 1015 where RI, RO and Ra have the indicated value, is subjected to oxidation of the jelly osinerodistym potassium in an alkaline medium, for example in the emulsion niridina and 16-30% strength alkali at 10 ° C.25 O- Example 1.a) 2-

Номер патента: SU374309A1. Автор: . Владелец: институт С. М. Кирова. Дата публикации: 1973-03-20.

PULSE SPEED VARIATOR1 The invention relates to adjustable mechanical transmissions of a pulse action and can 'find. Application in drives of various' Purpose, for example in drives of plastics and rubber processing machines. Pulse velocity amplifiers are known, comprising a housing and a master and the driven shaft, the converting mechanism in the Kvodoshilno-rod-and-pinion mechanism, the freewheel clutch. and the adjusting mechanism. The disadvantages of the known variator are the cumbersome design and the impossibility of getting and the optimal law of motion; Neither the link of the link. With the aim of enhancing the structure and obtaining the optimal value of the law of the motion of the driven link, each transforming mechanism is made in the form of a spreading rocker mechanism, including rollers, installed uniformly around the circumference on the outer ring of the corresponding coupling of the free stroke, and the helical cam interacting with the housing and the rollers. FIG. 1 shows the pulse speed variator, general view; in fig. 2 - the same, section. A - A. FIG. one; in fig. 3 is a graph of the change in the gear ratio from the driven cage of the one-way clutch to vedu-2iB P T BFSH! To the inoperative shaft of the variator depending on the angle φ of rotation of the latter 15 ° and 60 °; in fig. 4 is a graph showing the change in the gear ratio of the variator from the driven shaft to its leader, 5 depending on the angle φ of rotation of the next section at 15 ° and Y 60 °. The variator has a driving shaft 1 installed coaxially with the driven shaft 2 on the bearings in the housing 3, and the disk 4, hingedly connected in the center with the drive shaft 1, rods 5 with different lengths and equal mass m., equally spaced relative to the axis of the driven shaft 2 of the cylindrical surface and set movably in Enclosure 3. When it is 15 M, the free ends of the plugs 5, extending to disk 4, interact with the latter, for example, via hydrostatic slide bearings (or rolling bearing). The other ends of the rods 5 are fastened to the screw cam-20. 6, each of which with its flat surface interacts with the housing 3 through a cyclical roller 7 with a fixed axis of rotation and a screw surface with the outer race 8 of the freewheel through -25 a cylindrical roller 9, the axis of rotation of which is bonded to the freewheel 8 of the overrunning clutch. The hubs 10 of the free-wheeling clutch are fastened with the known shaft 2, and their clips 8 are spring-loaded relative to the building 30 sa 3 in a circular direction, for example.

Номер патента: SU420832A1. Автор: А. П. Чист ков изобретени М. Д. Фурасов. Владелец: резины , искусственной кожи. Дата публикации: 1974-03-25.

Immunological method] SCHGNOSTIKI AKTISHOSTI TUBERKULEZNOSH PShTsBSSLF1'sji'd ^ jU-s "5! 1Izobretenie relates to oblas- 1 minute and medicine relates to methods tshunologi- iCal activity diagnosing tuberculosis protsessa.Izvesten DTH assessment method by considering tsitotokszhcheskogo effect, adding a developing immune the lymphocytes of the test organism to target cells, for example, macros (|) agamas with treated tuberculin. In order to increase the specificity and sensitivity of the method, lymphocytes are added to the macrophages of an animal infected with tuberculosis. Example: The experiment was carried out on mice of the Baile / s line. 20 mice, 21 and 28 days before the study, were infected with 0.1 mg of Hi7 culture, 20 mice — 1.5 months before the experiment were vaccinated with I mg of BCC and 20 mice were taken as controls. Macrophages from the peritoneal cavity from infected, vaccinated and control mice were grown for 48 hours in flat-bottomed tubes (200-250 thousand macrophages were poured into 1 ml of medium 199 with 20% of bovine serum in each tube). cattle and 10/0 lactalbumin ;. Then, lymphocytes are also added to the tube from infected, vaccinated and control animals in a ratio of 100 viable lymphocytes per macrophage I (lnk4'ocytes are obtained from lymph nodes by extrusion, their ability to be evaluated by staining with 0.1 ^ trepan blue and 0.1 ^ eosin), 2 * 10 * ^ viable lymphocytes are added to each tube with macrophages in I NJI medium 199 with 15 ^ lactalbumin, after one day, the substitute is replaced with a new batch with 2% serum "ore horned cattle and 10 ^ lightaloumina. The results of the reaction are evaluated after 48 hours by the formulas ^ -B 1oo:. Th and

Номер патента: SU424430A1. Автор: А.М. Мороз,В.И. Литвинов,В.А. Клюев,М.М. Авербах,В.Я. Гергерт,Н.С. Колодяжная. Владелец: Центральный научно исследовательский институт туберкулеза. Дата публикации: 1974-09-05.

Structure of circulation type bubble bath

Номер патента: JPS5636952A. Автор: Masanori Koyamoto,Toshiyuki Kakigi,Kiyonobu Nonaka,Jiyunichi Sakamoto. Владелец: Matsushita Electric Works Ltd. Дата публикации: 1981-04-10.

Improved heating apparatus and system of circulation

Номер патента: AU1994910A. Автор: Christie Smith John. Владелец: Individual. Дата публикации: 1911-02-07.

Method of circulation and apparatus therefor

Номер патента: AU326205A. Автор: Perkins Dewey Frederic. Владелец: Individual. Дата публикации: 1905-10-10.

Improved structure of circulating water-cooled water pump

Номер патента: TW297464U. Автор: Zai-Fu Lin. Владелец: Zai-Fu Lin. Дата публикации: 1997-02-01.

Window with functions of circulation and adjustment of indoor air and temperature

Номер патента: TW201245561A. Автор: Qing-Yan Lin. Владелец: Asiatic Insulated Aluminum Window Co Ltd. Дата публикации: 2012-11-16.

Method of circulation and apparatus therefor

Номер патента: AU326205B. Автор: Perkins Dewey Frederic. Владелец: Individual. Дата публикации: 1905-10-10.

Boilder device preventing cavitation of circulation pump

Номер патента: JPS57184808A. Автор: Masakatsu Maeda. Владелец: Babcock Hitachi KK. Дата публикации: 1982-11-13.

Improved heating apparatus and system of circulation

Номер патента: AU1994910B. Автор: Christie Smith John. Владелец: Individual. Дата публикации: 1911-02-07.

Improved Safety System of Circulating Hot Water for Domestic and other Purposes.

Номер патента: GB189504133A. Автор: Peter Haden. Владелец: Individual. Дата публикации: 1895-09-28.

Apparatus for the automatic changing of circulating library books

Номер патента: CA29546A. Автор: Julius Mehlhardt,Anton Braune. Владелец: Individual. Дата публикации: 1888-07-24.

Construction of circulator of ball nut and its production process

Номер патента: TW239876B. Автор: Maw-Duenn Lii. Владелец: Maw-Duenn Lii. Дата публикации: 1995-02-01.

New design of the rack and rails for the oven of circulated steam

Номер патента: TW361217U. Автор: Masahiko Watanabe,Akihiko Aoki,Koji Ishisaki,Kazuyoshi Koyanagi. Владелец: Maruzen KK. Дата публикации: 1999-06-11.

Improvements in or relating to a device for measuring the flow intensity of circulating liquid

Номер патента: AU4970069A. Автор: . Владелец: Philips Gloeilampenfabrieken NV. Дата публикации: 1970-07-30.

Method of sludging of circulation tank for plating solution in metal plating

Номер патента: JPS51149835A. Автор: Hikari Kodama,Rikio Ooishi. Владелец: Nippon Kokan Ltd. Дата публикации: 1976-12-23.

Method of circulating plating solution of plating bath

Номер патента: JPS5281030A. Автор: Kiyoshi Maruyama,Hideaki Mouri,Kazuyuki Andou,Masahiro Ichijiyou. Владелец: SUMITOMO METAL MINING CO LTD. Дата публикации: 1977-07-07.

Method of circulating rinsing water in sprayypainting chamber of rinsing type

Номер патента: JPS5364868A. Автор: Masami Wakafuji. Владелец: Individual. Дата публикации: 1978-06-09.

Method of circulating and treating waste plating solution

Номер патента: JPS5337148A. Автор: Yasuhiko Hashimoto. Владелец: NIPPON FUIRUTAA KK. Дата публикации: 1978-04-06.

Method of circulation

Номер патента: CA102627A. Автор: Frederic Perkins Dewey. Владелец: Individual. Дата публикации: 1906-12-18.

Method of circulating wire rope system in trucks

Номер патента: SK1442010A3. Автор: Vladimír Štollmann,Štefan ILČÍK,Jozef Suchomel. Владелец: Technicka Univerzita Vo Zvolene. Дата публикации: 2012-06-04.

Regenerating method and apparatus of circulated water for breeding

Номер патента: JPS5554836A. Автор: Tadayoshi Wada,Yasuhiro Furusaka,Tsunenori Obata. Владелец: RAIBU SYSTEM KK. Дата публикации: 1980-04-22.

Fishing pants capable of circulating body heat

Номер патента: TWM284462U. Автор: Tze-Shau Shr. Владелец: Pacific Eagle Entpr Co Ltd. Дата публикации: 2006-01-01.

Fishing pants cloth structure capable of circulating body heat

Номер патента: TWM284539U. Автор: Tze-Shau Shr. Владелец: Pacific Eagle Entpr Co Ltd. Дата публикации: 2006-01-01.

ELECTRIC SWITCHING DEVICE DRIVE1 The invention relates to the field of electrical equipment and, in particular, to drives of commutating electrical devices, whose contacts in the extreme positions close the electrical circuits. The drives of the electrical switching devices, which are in the extreme positions, are known close the electrical circuits containing a source of mechanical energy, such as an electromagnet, an executive organ'N, a kinematic chain, which includes an overtaking clutch, and a mechanism with dead positions m'i, consisting of steerable driving unit and the driven member, is to yuschegos "ta'ktonositele1M.V proposed to increase drive reliability Yusti clutch overtaking snabl ^ ene lock f.i'ksiruyuschey kontaktonositel in each of the extreme positions at iekotorom nedohode mechanism until a dead position. In addition, the interlock is made in the form of a two-groove rigidly connected with the overtaking clutch part that interacts with a lever that is rigidly attached to a gear wheel (a kinematic chain whose working section has a cylindrical surface. Fig. 1 shows a schematic design of the drive ; Fig. 2 shows a section along A-A in Fig. 1; Fig. 3 shows a diagram of the mechanism in the extreme positions of the contacts; Fig. 4 shows a drive with a crank-1 slider mechanism; and Fig. 5 shows a drive with cam mechanism. The drive consists of a source of mechanical 5 energy, for example The electromagnet 1, the executive body of which is the measles 2, is connected via a kinematic chain (tons ha 3, lever 4, shaft 5, gear wheel 6, rubble 7 and shaft 8) to the hinge four-linkage !, dead-end mechanism The mechanism of the semi-rotary link of the mechanism — crank 9 is rigidly connected with the shaft 8 and connected through a connecting rod 10 with its driven Even-Kor'Mysly II. The beam is installed not-15 nodvizhno on the shaft 12 of the apparatus, which carries (is the contact carrier) movable contacts 13 and 14. These contacts are in two extreme nobilities through fixed contacts 15 and 16 close the electrical circuit. Between -20, the leading full-pivot link of the mechanism — a crank and an element connected to the executive bodies — the trunk 2, has an overtaking clutch. The latter is provided with a lock that fixes the driven de-25 hoist of the coupling relative to the specified element. On the fng. Figures 1 and 2 show an example of a specific drive design. Here, the element connected to the executive body 30 is the gear wheel 6, from which

Номер патента: SU420001A1. Автор: . Владелец: В. Е. Сергиенко, И. А. Савин , В. Я. Галасюк. Дата публикации: 1974-03-15.

GAS-OXYGEN FURMA3 P T B ^ • ^ - ^: ":" "- - W'SH1 The invention relates to the field of metallurgy, in particular, can be used in steelmaking. A known gas-oxygen lance for blowing melts with preliminary mixing of gases ( fuel and oxygen), which consists of coaxially arranged pipes and a head with nozzles with a central supply of cooling water. However, this lance is not equipped with a device that prevents flame from leaking from the nozzles to the mixing unit. Combustion of a mixture of gas and oxygen inside the annular supply path leads to cut In the proposed gas-oxygen tuyere, in order to prevent flame penetration from the purge nozzles into the fuel-oxygen path, the latter in the lower part is divided by an annular water-cooled partition with openings (an annular partition is manufactured metal, for example copper), an annular gas manifold is placed under the partition, which communicates with the purge nozzles. FIG. 1 shows the gas-oxygen |) urma in section; in fig. 2 is the same; the section along A — A in FIG. 1. The described lance consists of three coaxial alipulations of the pipes, through which, like in an ordinary oxygen lance, the head I is fed, and water is drained from it, and purging gas is fed into it. The lance has a central-axial supply of water 2 to the head I 5 for cooling, channels 3 for draining water from the cetiral cavity of the head into the inter-pipe cavity 4 of the lance. Channels 3 are evenly distributed between the nozzles 5. In the tail part of the tuyere, as in the known tuyeres, there are 10 nozzles b and 7, respectively, for iodachi in the tuyere and removal of water for cooling from it, as well as the nozzles 8 and 9, respectively, for introducing oxygen into the tuyere and fuel (gas). In addition, in the tail part of the tuyere, at the 15th level of the tubing 9, there is a mixing ring 10, which overlaps the annular gap formed by the central (axial) pipe 11 and the separation pipe 12. The mixing ring 10 is sealed 20 (for example, by welding), welded or with one of these pipes or with both. In the first case, the circumferential docking with the pipe has a seal 13. The mixing ring 10 contains a series of vertical holes — mixing nozzles 14, through which from the upper part 15 of the annular gap, blocked by ring 10, oxygen passes into the fuel-oxygen path 16. The mixing nozzles 14 in the lower part are articulated with openings 17, which serve to supply gaseous

Номер патента: SU472980A1. Автор: Михаил Андреевич Третьяков,Витольд Марианович Лупэйко,Александр Михайлович Лирман,Леонид Георгиевич Коломийцев,Геннадий Кузьмич Огородников,Николай Андреевич Фомин,Виктор Аркадьевич Низель,Оскар Хайрулович Габидулин,Виктор Григорьевич Удовенко,Василий Андреевич Денисов,Геннадий Елизарович Овчинников,Георгий Борисович Рогов. Владелец: Уральский Научно-Исследовательский Институт Черных Металлов". Дата публикации: 1975-06-05.

CONTROL DEVICE OF MULTI-POSITIONING MUFFLE, FOR EXAMPLE, THE MAIN DRIVE OF THE METAL-CUTTING MACHINE MACHINE 1, It can be most useful for controlling elements of metal machining machines that require power switching on and off of a handheld manual drive (or. Mechanical drives of devices for control of metal-cutting machines known to include a rotary handle are known. gear and lever fist or gearing. These gears require switching, reversing and demanding gears on the hand grip to turn on and off and off. Mechanical devices with manual control of the friction clutches are power, and the necessary force is included, and the norms are set to normal.In addition, after 20 certain mechanical wear of mechanical systems, such as manual lever-operated friction clutches, an incomplete force closure of the friction discs takes place, and consequently, a periodic - 25 adjustment of the compensating element. The aim of the invention is to reduce the force and the handle and to ensure smooth operation of the coupling during switching. This is achieved by the fact that the control of the 30 coupling is built-in. Irimer, rotary action, the spool of which is connected to the control handle, and the distribution sleeve of the cylinder is connected to a gear train}! mufto !!. The cylinder can be made multi-hazardous, which makes it possible to use its own lubrication system for powering the turn) south of the cylinder. In FIG. 1 shows a handle with a rotary slide valve} i and a rotating multi-blade ciliadrome; in fig. 2 is a section along .4 — .4 in FIG. one; in fig. 3 - on the arrow B; in fig. 4 shows a section but B — B in FIG. one; in fig. B — scheme of the power supply of the control system from the lubrication system of the machine. The manual lever control is multipositional !! friction clutch of metal-cutting machine. (for example, tokarn01Ch), contains a handle 1, rigidly seated on the shaft 2, associated with the rotary valve 3 of the boundary layer. The rotary slide valve 3 is located in the distribution sleeve 4, which is mounted in the rotation part 5 of the hydraulic cylinder, whose casing is fixedly mounted on the frame. The distribution sleeve 4 and the rotary part 5 are connected by means of a pin 6 '. Rotary) and 1lnndr consists of a sector 7, end flanges 8 and distribution sectors 9. In the basics of the rotary part 5

Номер патента: SU419322A1. Автор: изо бретен. Владелец: Б. А. Акимов, Г. В. Маринин, Э. Агиштейн , Ю. М. Жедь. Дата публикации: 1974-03-15.

A method for producing 3-amino-1-oxyanthraquinone or its N-alkylated derivatives. The invention relates to a method for producing anthraquinone derivatives, c. of particular Z-amino-1-oxyanthraquinone or its N-al.kylated derivatives, which can be used as intermediates for the synthesis of dyes. A known method for producing Z-amino-1-oxy-anthraquinone or its N-alkyl derivatives, in which the corresponding 2-amino-1,4-dioxyanthraquinone derivatives are treated with acetic anhydride in the presence of pyridine, and then reconstituted, for example, with zinc dust, followed by hydrolysis of the resulting product and isolation of the target product by known techniques. Yield 61–62%. The disadvantages of the method are the low yield of the target products and the use of hard-to-reach raw materials. In order to use the more accessible raw materials and increase the yield of the target product by the proposed method, sodium hydrosulfite is used in alcohol solutions of ammonia or aliphatic amines. The target product is isolated by known methods. Yield 80–94%. The method is simple in technological design and allows production to be carried out on an industrial scale. Example 1. Preparation of 3-methylamino-1-hydroxyanthraquinone. 0.5 g of a finely grated 2-methylamino-1,4-di-1015202530 oxothraquinone is suspended in 15 ml of 25% - An alcoholic solution of monomethylamine is added with 2 g of sodium hydrosulfite and stirred at 70 ° C for 25 minutes under nitrogen. Then, air is blown through the reaction mass until drying, after which it is washed with water and filtered. The precipitate is dried, triturated with 15 ml of chloroform and filtered again. Obtain 0.44 g (94.0%) of the substance, so pl. 295–296 ° C. Needles, so pl. 296–297 ° C (pyridine). Found,%: C 71.55, 71.48; H 4.26, 4.38; N 5.50, 5.63. Mol weight (mass spectrometry) 253.CisHiiNOs. Calculated,%: C 71.14; H 4.37; N 5.53. Mol weight. 253. Acetyl (ethanol). Found,%: N 4.09, 4.09.Ci9H, i5N05. Calculated,%: C 67.65; H 4.48; N 4.15. PMR-'Spectrum (in SOS1h): 6 2.06 singlet

Номер патента: SU364593A1. Автор: В. В. Русских Е. П. Фокин витель С. А. Русских. Владелец: Новосибирский Институт органической химии Сибирского отделени СССР. Дата публикации: 1972-12-28.

A DEVICE FOR CAPTURING STEM BARS AND SUBMITTING THEM TO THE FEEDER'S STORE FIG. 1 shows the device, top view; 5 in FIG. 2 is a section along A — A in FIG. 1 (vertical wall conventionally not shown); pas figs. 3 — section 13 — B in FIG. 2; in fig. 4—7 — various webs of the gripping bodies in the process of cutting off and transferring a group of rods to the loading slot. On the base 1 with the ability to adjust the slope, the support beams of the bupker 2 are installed to stack bundles of rods loaded into the feeder 3 on them. stops 4. The wedge-shaped gripping bodies 5, which are vertically movable, are mounted with the help of rods 6 in guides 7 rigidly connected to the bed 1. Drives 8, for example, the peell cylinders of various claws, are also rigidly connected to the bed 1. Cluster-shaped e bodies 5 are at the base of horizontally rasyolozhennye protrusions 9 directed toward the loading slot 10, and provided with uporami.Zahvatnye pgarpirpo bodies 5 are joined at verschin connecting rods 11, which are capable of altering the length, for example telescopic. The distance between the organs of 30 can be changed, the last) and at 2025

Номер патента: SU424639A1. Автор: В. В. Табуринский А. Ф. Тупиков В. М. Гдалевич изобретени Б. Р. Минкин. Владелец: Это достигаетс тем, что захватный орган состоит трех независимо подвижных плоскости, перпендикул рной расположепию загрузочной щели, , параллельных между собой пластин, средн которых расположена между планками склиза, причем пластины соединены последовательно помощью телескопических При этом кажда п. Дата публикации: 1974-04-25.

DEVICE FOR CONTINUOUS VOLKANIZATION OF LONG-DIMENSIONAL PRODUCTS IN A PSE-DRIVED LAYER 1 The invention relates to the vulcanization (polymerization) field of long products in a fluidized bed and can be used for heat treatment of rubberized fabric and other polymeric materials. 5A well-known device for continuous vulcanization of long products in a fluidized bed, containing a vertical chamber filled with granular coolant immersed in the last heaters and an air duct for supplying a fluidizing agent associated with the inlet section of the chamber. However, in such a device, the fluidizing fluidity is not evenly distributed Layer height of the camera. It has only a narrow area of stable fluidization regime, therefore, the quality of heat treatment of products is insufficient. In order to expand the stable regime of fluidization in the proposed device 20, the inlet section of the chamber is made with a U-shaped longitudinal section, edged towards the top of the product, and connected with air duct by means of a slit neck and a diffuser. On the longitudinal walls 25 of the chamber, vortex converters are mounted, made in the form of inclined plates arranged in rows along the movement of the product with alternating direction of inclination. FIG. 1 shows the described device, a longitudinal section; pas figs. 2 is a view of the arrow A in FIG. 1 ^^ llzdelie conventionally not shown). The device contains a vertical chamber 1 filled with granular inert coolant 2, horizontal tubular electric heaters 3, an air duct 4 for supplying a fluidizing agent and a separation chamber 5. The outlet section of chamber 1 is made with a U-shaped longitudinal section facing the top towards the supply of the product being processed, and by means of a narrow 11 slit neck 6 and diffuser 7 is connected to the duct 4. On the longitudinal walls of the chamber 1 are mounted eddy 8, made in the form of inclined plates (see Fig. 2), arranged in rows along the movement of the product with alternating directions of inclination, for example, in a checkerboard pattern. The device is operated as follows. The workpiece 9, for example cut fabric, is continuously fed through the center of the chamber 1 at the bottom and retracted from the top. A fluidizing agent, such as heated gas, is supplied to the chamber through an air duct, the speed of which in slit neck 6 is sufficient to prevent granular heat carrier 2 from spilling out from chamber 1. Heat carrier 2 is intensively mixed and transfers heat from the ventilating gas and fabric heaters.

Номер патента: SU434022A1. Автор: . Владелец: В. Д. Гвоздев, Н. И. Петрунин, В. К. Медведев, А. Г. Киселев , М. И. Кочержинский. Дата публикации: 1974-06-30.

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