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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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Форма поиска

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 2215. Отображено 100.
10-09-2014 дата публикации

Электрический соединитель для многослойного стекла и электронагреваемое оконное стекло

Номер: RU0000144837U1

1. Электрический соединитель для многослойного стекла, состоящего из двух панелей остекления с расположенным между ними по меньшей мере одним промежуточным ламинирующим слоем, также содержащего электрическое устройство, расположенное между двумя панелями остекления, причем электрический соединитель представляет собой электропроводящую полосу для соединения одного входа электрического устройства с источником электрической энергии, которая присоединена со всех сторон к по меньшей мере одному промежуточному слою с образованием водонепроницаемого уплотнения.2. Электрический соединитель по п. 1, который использован в многослойном стекле с одним ламинирующим слоем и электрическим устройством, расположенным между одной из двух панелей остекления и промежуточным ламинирующим слоем, причем электропроводящая полоса имеет первую часть для соединения с входом электрического устройства, расположенную между указанной панелью остекления и промежуточным ламинирующим слоем, вторую часть для соединения с источником электрической энергии, расположенную между другой панелью остекления и промежуточным ламинирующим слоем, а также третью часть, соединяющую первую и вторую части между собой и проходящую через промежуточный ламинирующий слой, которая прикреплена к промежуточному ламинирующему слою с образованием водонепроницаемого уплотнения.3. Соединитель по п. 2, в котором третья часть электропроводящей полосы проходит через промежуточный ламинирующий слой, по существу, перпендикулярно к двум панелям остекления.4. Соединитель по п. 2, в котором третья часть электропроводящей полосы наклонена относительно перв РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 144 837 U1 (51) МПК H05B 3/86 (2006.01) B60J 1/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014108933/07, 07.03.2014 (24) Дата начала отсчета срока действия патента: 07.03.2014 Приоритет(ы): (30) Конвенционный приоритет: (72) Автор(ы): ФОСЕТТ Найджел ...

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14-03-2013 дата публикации

Laminated glass pane with electrical function and connection element

Номер: US20130062119A1
Принадлежит: Saint Gobain Glass France SAS

A laminated glass pane with electrical function and connection element is described. The laminated glass pane has at least two individual glass panes, which are areally connected to at least one thermoplastic intermediate layer. The laminated glass pane further has at least one electrically functional layer, which is situated between the at least two individual glass panes at least one foil conductor, which is electrically conductively connected to the at least one electrically functional layer, and at least one housing with at least one electrical feed line and at least one electrical line connection. The at least two individual glass panes has at least one undercut glass pane, wherein the at least one foil conductor runs without an overhang around a lateral edge of the at least one undercut glass pane.

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04-07-2013 дата публикации

Bullet-proof glass pane with edge reinforcement

Номер: US20130171398A1
Автор: Siegfried Stranner
Принадлежит: Isoclima SpA

The invention relates to a bulletproof glass pane for use in a motor vehicle having a plurality of panes and layers of glass, ceramics or plastics connected two-dimensionally to each other in layers to form a composite, and having an edge reinforcement that extends at the periphery of the bulletproof glass pane, wherein the edge reinforcement comprises at least two or more reinforcing elements that are in loose mutual engagement.

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28-11-2013 дата публикации

Electrochemical glazing having electrically controllable optical and energy-related properties

Номер: US20130312341A1
Принадлежит: Sage Electrochromics Inc

The invention relates to glazing ( 1 ) comprising a first glazing sheet ( 10; 10 A, 10 B) forming a substrate on which at least one film of an electrochemical system ( 12 ) is formed, said system having optical and/or energy-related properties that are electrically controllable, a second glazing sheet ( 14 ) forming a counter-substrate, and a third glazing sheet ( 18 ). The substrate has characteristics that allow it to be obtained by being cut from a motherboard on which motherboard at least one film of the electrochemical system ( 12 ) is formed. The substrate is located between the counter-substrate ( 14 ) and the third glazing sheet ( 18 ) and is set back relative to the counter-substrate ( 14 ) and relative to the third glazing sheet ( 18 ) over the entire circumference of the substrate ( 10; 10 A, 10 B).

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16-01-2014 дата публикации

Light weight glass laminates

Номер: US20140017455A1
Принадлежит: EI Du Pont de Nemours and Co

Provided herein are light weight glass laminates having ionomeric interlayers and at least one glass layer. In particular, the weight of the glass laminates is reduced by reducing the thickness of the at least one glass layer to about 2.0 mm or less, or to about 1.5 mm or less. The light weight laminates retain favorable performance properties such as have good Pummel adhesion levels, good moisture resistance, and low stress. Further provided are lightweight glass laminates equipped with integral mounting devices.

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06-03-2014 дата публикации

Flat-conductor connection element for an antenna structure

Номер: US20140060921A1
Принадлежит: Saint Gobain Glass France SAS

A flat-conductor connection element for an antenna structure is described. The flat-conductor connection element, is arranged in or on a pane and has: a flat conductor with a base layer, a conductor track, a first dielectric layer, a shield, and a second dielectric layer and a metal frame.

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01-01-2015 дата публикации

Bullet-Proof Glass Pane and Associated Bullet-Resistant Appartus

Номер: US20150000511A1
Автор: Engl Andreas
Принадлежит:

The present invention relates to a bullet-proof glass pane, in particular for use in a motor vehicle, comprising a ballistic block comprising a plurality of panes of glass, ceramic or plastic material bonded to each other over their surfaces in a layered composite, and interposed bonding interlayers of plastic material, wherein at least one bullet-resistant strip is provided, having, in particular, an essentially rectangular cross-section and covering the ballistic block of the bullet-proof glass pane at its peripheral edge. 1. A bullet-proof glass pane , in particular for use in a motor vehicle , comprising a ballistic block-comprising a plurality of panes of , ceramic or plastic material bonded to each other over their surfaces in a layered composite , and interposed bonding interlayers of plastic material , characterized by at least one bullet-resistant strip having , in particular , an essentially rectangular cross-section and covering the ballistic block of the bullet-proof glass pane at its peripheral edge.2. The bullet-proof glass pane according to claim 1 , wherein the strip is of metal claim 1 , in particular of ballistic steel.3. The bullet-proof glass pane according to claim 1 , wherein the ballistic block has a stepped configuration at its end face-from the outside to the inside.4. The bullet-proof glass pane according to claims 1 , characterized by at least one outer glass pane claims 1 , ceramic pane or plastic pane bonded to the ballistic block on the side of impact and protruding from the ballistic block at the outer periphery or circumference of the bullet-proof glass pane.5. The bullet-proof glass pane according to claims 1 , characterized by a glass pane claims 1 , ceramic pane or plastic pane bonded to the ballistic block on the side of impact and protruding from the ballistic block and the at least one strip at the outer periphery of the bullet-proof glass pane to form a protrusion of the bullet-proof glass pane for mounting the bullet-proof ...

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11-01-2018 дата публикации

Laminated glass and vehicle window

Номер: US20180009294A1
Принадлежит: Asahi Glass Co Ltd

A laminated glass includes a first glass plate; a second glass plate with a plate thickness which is less than a plate thickness of the first glass plate; and an intermediate film. The first glass plate and the second glass plate are laminated via the intermediate film. An external dimension of the second glass plate is less than an external dimension of the first glass plate. At least a part of an outer peripheral edge of the second glass plate is located on an inner periphery side with respect to an outer peripheral edge of the first glass plate.

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14-01-2021 дата публикации

COMPOSITE PANE WITH A FUNCTIONAL ELEMENT HAVING ELECTRICALLY CONTROLLABLE OPTICAL PROPERTIES WITH IMPROVED EDGE SEALING

Номер: US20210008842A1
Принадлежит:

A composite pane containing a functional element having electrically controllable optical properties includes, in this order, a first pane, a first thermoplastic composite film having at least one plasticizer, a functional element having a peripheral edge, a barrier film having a cutout, into which the functional element is inserted, a second thermoplastic composite film having at least one plasticizer, a second pane, wherein the barrier film surrounds the functional element in a frame-like manner and is in direct contact with the peripheral edge of the functional element, and the barrier film contains at most 0.5 wt.-% plasticizer and prevents the diffusion of plasticizer through the barrier film. 2. The composite pane according to claim 1 , wherein the functional element is a polymer dispersed liquid crystal (PDLC) film.3. The composite pane according to claim 1 , wherein a thickness of the barrier film and a thickness of the functional element differ from one another by at most 30% claim 1 , and the thickness of the barrier film and the thickness of the functional element are substantially the same.4. The composite pane according to claim 1 , wherein the barrier film has a thickness of 0.1 mm to 1.0 mm.5. The composite pane according to claim 1 , wherein the first and/or the second thermoplastic composite film contains at least 3 wt. % of a plasticizer claim 1 , and the plasticizer contains or is made of aliphatic diesters of tri- or tetraethylene glycol.6. The composite pane according to claim 1 , wherein the thermoplastic composite films contain at least 60 wt. % of polyvinyl butyral (PVB).7. The composite pane according to claim 1 , wherein the barrier film contains or is made of polyethylene terephthalate PET) or polyvinyl fluoride (PVF) and is plasticizer free.8. The composite pane according to claim 1 , wherein the material composition of the barrier film differs in terms of its main constituent by weight from the main constituent by weight of the ...

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14-01-2021 дата публикации

METHOD FOR PRODUCING A COMPOSITE PANE WITH A FUNCTIONAL ELEMENT HAVING ELECTRICALLY CONTROLLABLE OPTICAL PROPERTIES

Номер: US20210008843A1
Принадлежит:

A method for producing a composite pane with a functional element having electrically controllable optical properties, includes providing a first pre-composite including a first thermoplastic laminating film and a first barrier film as well as a second pre-composite including a second thermoplastic laminating film and a second barrier layer trimming and the pre-composites substantially to the dimensions of the composite pane, forming a circumferential back cut in the barrier films, arranging the first pane, the first pre-composite, a functional element, the second pre-composite, and a second pane one over another in this order, the barrier films being arranged sheet-wise directly adjacent the functional element, surrounding the circumferential edge of the functional element, and touching one another sheet-wise at least in sections in an overhang u protruding beyond the functional element, and bonding the layer stack. 1. A method for producing a composite pane with a functional element having electrically controllable optical properties , the method comprising:a) providing a first pre-composite comprising a first thermoplastic laminating film and a first barrier film as well as a second pre-composite comprising a second thermoplastic laminating film and a second barrier layer and trimming the first and second pre-composites substantially to dimensions of the composite pane to be produced,b) forming a circumferential back cut in the first and second barrier films,c) arranging a first pane, the first pre-composite, a functional element, the second pre-composite, and a second pane one over another in this order, wherein the first and second barrier films are arranged sheet-wise directly adjacent the functional element with, at least in sections, a common overhang that is beyond the circumferential edge of the functional element and surrounds the circumferential edge of the functional element, andd) bonding the layer stack comprising, in this order, the first pane, the ...

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14-01-2021 дата публикации

HEATED LAMINATE WITH IMPROVED AESTHETIC

Номер: US20210008844A1
Принадлежит:

Heated windshields, which utilize a transparent conductive coating, are increasing in popularity due to the rapid deice defog action and higher efficiency of such products. With the limited waste heat available in electric and hybrid electric vehicles, cabin heating and defrosting must be done with electric power. One of the problems in designing a heated windshield is hiding the busbars from view for the exterior of the vehicle. This is especially a problem when the coating is on the inner surface of the exterior glass layer which is the preferred embodiment for both solar control and defrosting. The normal black obscuration cannot be applied over the coating and it is very expensive to first paint and then coat the glass. The invention makes use of a thin conductive layer placed between the bus bars and the coating which serves to hide the bus bars from view providing a glazing with an improved aesthetic. 1. A laminated glass comprising:at least two glass layers, an outer glass layer and an inner glass layer;at least one plastic bonding layer;at least two bus bars;at least two thin sheets of a conductive material; anda transparent conductive layer;wherein said at least two thin sheets of a conductive material are positioned between the conductive layer and said at least two bus bars; andwherein said at least two glass layers, said at least two bus bars, said at least two thin sheets of a conductive material and the transparent conductive layer are bonded together to form a laminate by means of said at least one plastic bonding layer.2. The laminate of wherein the conductive material is a form of carbon.3. The laminate of wherein the conductive material is graphite.4. The laminate of wherein at least one of the at least two busbars is modified with discontinuities that break the flow of current from the bus bar to the conductive layer claim 1 , such that power is not feed along the entire length of said bus bar.5. The laminate of wherein the conductive layer is a ...

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03-02-2022 дата публикации

Laminated pane with integrated electrical attachment part

Номер: US20220032741A1
Принадлежит: Saint Gobain Glass France SAS

A laminated pane having at least one integrated electrical attachment part, includes an inner pane having an inner side and an outer side, an outer pane having an inner side and an outer side, a thermoplastic intermediate layer, which joins the inner side of the outer pane and the inner side of the inner pane to one another, and at least one recess in the inner pane and/or the outer pane, wherein the electrical attachment part is inserted into the recess and is situated completely within the laminated pane, the laminated pane is a vehicle laminated pane having a three-dimensional bend, and the recess is introduced into the inner pane and/or the outer pane by laser processes.

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17-01-2019 дата публикации

Electrical connection configurations for privacy glazing structures

Номер: US20190018277A1
Принадлежит: Cardinal IG Co

A privacy glazing structure may include an electrically controllable optically active material that provides controlled transition between a privacy or scattering state and a visible or transmittance state. To make electrical connections with electrode layers that control the optically active material, the privacy glazing structure may include electrode engagement regions. In some examples, the electrode engagement regions are formed as notches in peripheral edges of opposed panes bounding the optically active material. The notches may or may not overlap to provide a through conduit in the region of overlap for wiring. In either case, the notches may allow the remainder of the structure to have a flush edge surface for ease of downstream processing.

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21-01-2021 дата публикации

MANUFACTURE OF LAMINATED GLAZING

Номер: US20210017807A1
Принадлежит:

A process for manufacturing a bent laminated glazing, includes manufacturing a first bent laminated glazing including at least two glass substrates locally comprising, in each of the at least two glass substrates and facing each other in all the at least two glass substrates, a zone including compressive stresses, and cutting the first bent laminated glazing through its entire thickness along a line included in the zone in order to form local cut edges and, after cutting, a second bent laminated glazing with the local cut edges having compressive edge stresses. 122.-. (canceled)23. A process for manufacturing a bent laminated glazing , comprising:manufacturing a first bent laminated glazing comprising at least two glass substrates locally comprising, in each of the at least two glass substrates and facing each other in all the at least two glass substrates, a zone comprising compressive stresses, andcutting said first bent laminated glazing through its entire thickness along a line included in said zone in order to form local cut edges and, after cutting, a second bent laminated glazing with said local cut edges having compressive edge stresses.24. The process according to claim 23 , wherein the compressive edge stresses of the local cut edges are greater than 4 MPa.25. The process according to claim 24 , wherein the compressive edge stresses of the local cut edges are greater than 8 MPa.26. The process according to claim 23 , wherein the local cut edges is a notch.27. The process according to claim 23 , wherein the local cut edges is an orifice.28. The process according to claim 23 , wherein the zone in the first bent laminated glazing is free of orifice.29. The process according to claim 23 , wherein the compressive stresses in the zone has an area between 0.5 cmand 70 cm.30. The process according to claim 23 , wherein claim 23 , in said cutting of the first laminated glazing claim 23 , said line extends from one external edge to another external edge of the first ...

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21-01-2021 дата публикации

Automotive laminate with embedded camera

Номер: US20210021745A1
Принадлежит: AGP America SA

The increase in the electronic content of automotive glazing has expanded, from just components mounted to the glass, to components which are an integral permanent part of the glass. One component, which is becoming more and more common, is the camera. The use of camera-based safety systems, requiring a wide field of view and a high level of optical clarity, is growing at a rapid rate. As the industry moves towards full autonomous capability, the number of cameras and the resolution of the cameras are both increasing. At the same time, windshields, where many of the cameras are mounted, are becoming larger and more complex in shape. The windshield, as an integral part of the camera lens system, is less than optimal. The light has to pass through layers of glass and plastic leading to distortion, attenuation, color shift and double image as well as calibration issues. The effects of the windshield on the optical quality are mitigated by the invention by integrating the camera into the laminate.

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24-01-2019 дата публикации

LAMINATED VEHICLE GLAZING WITH AMOLED SCREEN

Номер: US20190022984A1
Принадлежит:

A laminated vehicle glazing includes an AMOLED screen between the internal faces F and F of the glazings and which is located in a widened masking zone of enamel on face F, and is alone or adjacent with another or several other flexible AMOLED screens also clustered in the zone. 2. The laminated vehicle glazing as claimed in claim 19 , wherein the connecting part is also masked by the external masking layer.3. The laminated vehicle glazing as claimed in claim 1 , wherein the widened masking zone is peripheral and is situated between a lateral edge of the glazing and a central zone of the glazing claim 1 , the organic light-emitting diode-based viewing screen is arranged horizontally along the longitudinal edge.4. The laminated vehicle glazing as claimed in claim 1 , wherein the organic light-emitting diode-based viewing screen is arranged horizontally along the longitudinal edge of the glazing claim 1 , on the driver's side or copilot's side:the organic light-emitting diode-based viewing screen is unique in the widened masking zone,or the organic light-emitting diode-based viewing screen is adjacent to the one or more additional organic light-emitting diode-based viewing screens, arranged horizontally, optionally of smaller size than the organic light-emitting diode-based viewing screen.5. The laminated vehicle glazing as claimed in claim 1 , wherein the widened masking zone is peripheral and situated in the central zone of the upper longitudinal edge of the glazing:the organic light-emitting diode-based viewing screen is the only one in the widened masking zone and arranged horizontally,or is adjacent, to one or more additional organic light-emitting diode-based viewing screens arranged horizontally, optionally of smaller sizes.6. The laminated vehicle glazing as claimed in claim 1 , wherein the widened masking zone is peripheral and situated in the central zone of the upper longitudinal edge and:the organic light-emitting diode-based viewing screen is arranged ...

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01-02-2018 дата публикации

LAMINATED GLAZING COMPRISING PROFILED CLIP IN BEADING

Номер: US20180029450A1
Принадлежит:

The present invention relates to a glazing () and notably a vehicle glazing, comprising a laminated glazed element () comprising an outside sheet of glass (), an inside sheet of glass () and an interlayer sheet of plastic () situated between said two sheets of glass, characterized in that said profiled beading () comprises, when viewed in cross section, an interlayer flange () situated between the interlayer face () of said outside sheet of glass () and the interlayer face () of said inside sheet of glass (). 112354. A glazing () and notably a vehicle glazing , comprising a laminated glazed element () comprising an outside sheet of glass () , an inside sheet of glass () and an interlayer sheet of plastic () situated between said two sheets of glass ,{'b': 3', '30', '31', '32', '4, 'said outside sheet of glass () having an outside face (), an edge face () and an interlayer face () which is oriented toward said interlayer sheet of plastic (),'}{'b': 5', '50', '4', '51', '52, 'said inside sheet of glass () having an interlayer face () which is oriented toward said interlayer sheet of plastic (), an edge face () and an inside face (),'}{'b': 1', '6', '60', '7', '6', '7', '70', '60, 'said glazing () comprising along at least part of at least one edge a profiled beading () comprising a groove () for clip-fastening a cover piece () onto said profiled beading (), said cover piece () comprising, viewed in cross section, a barbed hook () that enters said groove () at the time of clip-fastening,'}{'b': 6', '61', '32', '3', '50', '5, 'characterized in that said profiled beading () comprises, when viewed in cross section, an interlayer flange () situated between said interlayer face () of said outside sheet of glass () and said interlayer face () of said inside sheet of glass ().'}261. The glazing as claimed in claim 1 , characterized in that said interlayer flange () has a width (l) comprised between 2.0 and 10.0 mm claim 1 , or even comprised between 2.0 and 6.0 mm claim 1 , ...

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31-01-2019 дата публикации

GLASS PANEL WITH INTEGRATED ELECTRONIC DEVICE

Номер: US20190030866A1
Принадлежит:

The invention relates to a panel comprising (i) at least a first () outer and a second () inner glass sheet combined together by a means () of maintaining the two glass sheets at a certain distance between the two glass sheets (), (ii) an electronic device provided between the at least a first and a second glass sheet, (iii) an inner cable () to connect electrically the electronic device. According to the invention, the inner glass comprises an opening arranged in the area of at least one of its extremity to allow the inner cable () to pass through the said opening (). 1. A panel comprising:a. at least a first outer and a second inner glass sheet combined together by a means of maintaining the two glass sheets at a certain distance between the two glass sheets,b. an electronic device provided between the at least a first and a second glass sheet,c. an inner cable to connect electrically the electronic devicewherein the inner glass sheet comprises an opening arranged in an area of at least one of its extremities to allow the inner cable to pass through the opening.2. The panel according to claim 1 , the opening is arranged in the an area of a corner of the inner glass sheet and preferably in the lower part of the inner glass sheet.3. The panel according to claim 1 , wherein the opening is a cut-out and a shape of the cut-out is selected from the group consisting of triangular claim 1 , C-shape U-shape and circular.4. The panel according to wherein the panel is placed on a facade of a building.5. The panel according to claim 4 , wherein the cut-out is filled with an insertion piece having a shape of said opening.6. The panel according to claim 1 , wherein the panel is an insulated glazing panel and wherein the at least first and second glass sheets are separated by a spacer disposed between the at least first and second glass sheets that extends along a periphery of the glass sheets.7. The panel according to claims 6 , wherein the spacer has a rectangular shape or ...

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04-02-2021 дата публикации

METHOD FOR PRODUCING A COMPOSITE PANE HAVING POLARISATION-SELECTIVE COATING

Номер: US20210031494A1
Принадлежит:

A method for producing a composite pane suitable as a projection surface of a projection assembly, wherein (a) a polarisation-selective coating is provided on a carrier film; (b) the polarisation-selective coating is transferred from the carrier film onto a laminating film, by (i) arranging the carrier film and the laminating film areally one atop the other with the coating positioned therebetween to form a film stack, (ii) treating the film stack for at least 2 hours at a pressure of at least 8 bar and a temperature of 80° C. to 120° C. in an autoclave, and (iii) peeling the carrier film off the laminating film, with the coating remaining on the laminating film; (c) the laminating film is arranged areally between a first pane and a second pane; and (d) the first pane is laminated with the second pane via the laminating film to form the composite pane. 1. A method for producing a composite pane that is suitable as a projection surface of a projection assembly , the method comprising:(a) providing a polarisation-selective coating on a carrier film; (i) arranging the carrier film and the laminating film areally one atop the other with the polarisation-selective coating positioned therebetween to form a film stack,', '(ii) treating the film stack for at least 2 hours at a pressure of at least 8 bar and a temperature of 80° C. to 120° C. in an autoclave, and', '(iii) peeling the carrier film off the laminating film, with the polarisation-selective coating remaining on the laminating film;, '(b) transferring the polarisation-selective coating from the carrier film onto a laminating film, by'}(c) areally arranging the laminating film between a first pane and a second pane; and(d) laminating the first pane with the second pane via the laminating film to form the composite pane.25. The method according to claim 1 , wherein the polarisation-selective coating () includes liquid crystals.3. The method according to claim 1 , wherein the carrier film includes polyethylene ...

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08-02-2018 дата публикации

VEHICLE ANTENNA PANE

Номер: US20180037006A1
Принадлежит:

A vehicle antenna pane for separating a vehicle interior from external surroundings is presented. The pane has features that include an inner pane, an outer pane, at least one intermediate layer that connects an internal surface of the outer pane areally to an external surface of the inner pane, a planar antenna structure that is arranged between the inner pane and the outer pane, and a base plate that is arranged on an interior side in relation to the antenna structure. A dielectric is arranged between the antenna structure and the base plate, the dielectric being provided by means of the inner pane and the intermediate layer. A base of the antenna structure has a ratio of a length to a width of 1:1 to 10:1. 116.-. (canceled)17. A vehicle antenna pane configured to separate a vehicle interior from external surroundings , the vehicle antenna pane comprising:an inner pane having an external surface,an outer pane having an internal surface,at least one intermediate layer that connects the internal surface of the outer pane areally with the external surface of the inner pane,a planar antenna structure that is arranged between the inner pane and the outer pane, anda base plate that is arranged on an interior side in relation to the planar antenna structure,whereinat least one dielectric is arranged between the planar antenna structure and the base plate,the at least one dielectric consists of at least one of: a) the inner pane, b) the at least one intermediate layer, and c) the inner pane and the at least one intermediate layer,{'sub': A', 'A, 'the planar antenna structure has a base with a ratio of a length lof the base to a width bof the base that is in a range of 1:1 to 10:1, and'}the base plate is arranged at least in a region of an orthogonal projection of the planar antenna structure relative to the inner pane.18. The vehicle antenna pane according to claim 17 , wherein at least one of the planar antenna structure and the base plate comprises one or more of:a ...

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08-02-2018 дата публикации

ANTENNA PANE

Номер: US20180037007A1
Принадлежит:

An antenna pane is presented. The antenna pane has features that include an inner pane having an internal surface, an antenna structure made of an electrically conductive paste that is printed and fired into the internal surface of the inner pane, and a dielectric carrier element that is connected to the internal surface of the inner pane via an external surface of the dielectric carrier element. In one aspect, an internal surface of the dielectric carrier element has an electrically conductive base plate that is arranged in a region of an orthogonal projection of the antenna structure relative to the inner panel. 116.-. (canceled)17. An antenna pane , comprising:an inner pane having an internal surface,an antenna structure made of an electrically conductive paste that is printed and fired on the internal surface of the inner pane,a dielectric carrier element that is connected to the internal surface of the inner pane via an external surface of the dielectric carrier element, the dielectric carrier element having an electrically conductive base plate on an internal surface of the dielectric carrier element,wherein the electrically conductive base plate is arranged at least in a region of an orthogonal projection of the antenna structure relative to the inner pane.18. The antenna pane according to claim 17 , wherein the electrically conductive base plate contains one of:a printed, electrically conductive paste, andan electrically conductive foil.19. The antenna pane according to claim 18 ,wherein the electrically conductive base plate contains a silver-containing screen printing paste, andwherein the electrically conductive foil is a metal foil.20. The antenna pane according to claim 19 , wherein the metal foil is one of: a) a copper foil claim 19 , b) a silver foil claim 19 , c) a gold foil claim 19 , and d) an aluminum foil.21. The antenna pane according to claim 17 , wherein the printed and fired electrically conductive paste has a thickness of 3 μm to 20 μm and a ...

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24-02-2022 дата публикации

METHOD OF MANUFACTURING DISPLAY DEVICE

Номер: US20220055349A1
Принадлежит:

A method of manufacturing a display device includes: providing a glass including an edge region and an inner region; arranging a light source under the glass; setting a center position of the light source to correspond to an inside of the edge region or an inside of the inner region of the glass; directing light into the glass by using the light source; and detecting a defect in the edge region of the glass by receiving light passing through the glass by using a detection camera. 1. A method of manufacturing a display device , the method comprising:providing a glass comprising an edge region and an inner region;arranging a light source under the glass;setting a center position of the light source to correspond to an inside of the edge region or an inside of the inner region of the glass;directing light into the glass by using the light source; anddetecting a defect in the edge region of the glass by receiving light passing through the glass by using a detection camera.2. The method of manufacturing the display device of claim 1 , wherein the directing of the light into the glass further comprises adjusting a position of the light source such that light emitted from the light source enters the glass at an angle.3. The method of manufacturing the display device of claim 2 , wherein the angle is an acute angle.4. The method of manufacturing the display device of claim 2 , wherein the angle is determined in consideration of at least one of a performance of the detection camera claim 2 , a size of a defect to be detected claim 2 , and a thickness of the glass.5. The method of manufacturing the display device of claim 2 , wherein the detecting of the defect in the edge region further comprises:readjusting the position of the light source when it is determined that quality of a result of detecting the defect needs to be adjusted; anddetecting a defect in the edge region by using the light source with the readjusted position.6. The method of manufacturing the display device ...

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20-02-2020 дата публикации

METHOD FOR PRODUCING A COMPOSITE PANE WITH A FUNCTIONAL ELEMENT

Номер: US20200055284A1
Принадлежит:

A method for producing a composite pane, includes arranging a functional element in a recess of a thermoplastic frame film, arranging the thermoplastic frame film along with the functional element between a first glass pane and a second glass pane to form a layer stack, and subsequent joining of the layer stack by lamination to form a composite pane. The thermoplastic frame film and the functional element have a different thickness and the different thickness is at least partially compensated by at least one thermoplastic compensating film, whose thickness is less than twice as large as the difference between the thicknesses of the thermoplastic frame film and the functional element such that the maximum offset in the layer stack is less than the difference between the thicknesses of the thermoplastic frame film and the functional element. 1. A method for producing a composite pane , comprising arranging a functional element in a recess of a thermoplastic frame film , arranging the thermoplastic frame film along with the functional element between a first glass pane and a second glass pane to form a layer stack , and subsequent joining of the layer stack to form a composite pane by lamination ,wherein the thermoplastic frame film and the functional element have a different thickness and the different thickness is at least partially compensated by at least one thermoplastic compensating film, whose thickness is less than twice as large as a difference between the thicknesses of the thermoplastic frame film and the functional element such that a maximum offset in the layer stack is less than the difference between the thicknesses of the thermoplastic frame film and the functional element.2. The method according to claim 1 , wherein the maximum offset in the layer stack is less than or equal to the thickness of the compensating film.3. The method according to claim 1 , wherein the difference in thickness between thermoplastic frame film and the functional element is ...

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22-05-2014 дата публикации

Solar cell module and method of manufacturing same

Номер: US20140137940A1
Принадлежит: Mitsubishi Electric Corp

A solar cell module is obtained by the following method. In a step of sealing a solar cell module using laminated glass, a solar cell and a translucent intermediate film layer which seals the solar cell are interposed between a front side glass substrate and a rear side glass substrate. A sealing member in which an insertion part and an exterior part are formed by folding a sealing sheet having a bonding surface on one side, is employed in the module peripheral edge. The insertion part is inserted between the front side glass substrate and the rear side glass substrate, and bonding surfaces thereof are bonded to the front side glass substrate and the rear side glass substrate. A bonding surface of the exterior part is bonded to an end face of at least either of the front side glass substrate and the rear side glass substrate.

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19-03-2015 дата публикации

Illuminated glazing for vehicle

Номер: US20150078020A1
Принадлежит: Saint Gobain Glass France SAS

A vehicle lighting glazing, includes first and second transparent sheets each having a first face, a second face and a rim; a lamination separator in contact with the second face of the first sheet and with the first face of the second sheet, one or more light-emitting diode modules (LED modules) each including light-emitting diodes (LEDs) fixed onto a support, the modules being positioned so that the emitting face of the LEDs is facing the rim of the first sheet, and a light extraction element, wherein the second sheet extends beyond the first sheet, at least in the parts of the edge of the glazing where the LED modules are housed, so as to create, on the first face of the second sheet or on a coating covering this face, an area for receiving a bead of glue intended to fix the glazing to the bodywork of the vehicle.

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18-03-2021 дата публикации

DECORATIVE DESIGN ELEMENT IN BLACK PRINT

Номер: US20210078297A1
Принадлежит: SAINT-GOBAIN GLASS FRANCE

A laminated glass, includes an outer pane, an inner pane, at least two lamination layers arranged between the outer pane and the inner pane, and at least one design element, wherein the design element is formed on a partial region of a pane side of the outer pane or the inner pane from a pictorial black print having one or a plurality of unprinted regions, and an opaque, non-black underlay is arranged between the two lamination layers, which underlay is placed underneath the unprinted region(s) of the design element. The laminated glass has a design element with good contrast and good visibility and is suitable in particular as a vehicle window. 1. A laminated glass , comprising an outer pane , an inner pane , at least two lamination layers arranged between the outer pane and the inner pane , and at least one design element , wherein the design element is formed on a partial region of a pane side of the outer pane or the inner pane from a pictorial black print having one or a plurality of unprinted regions , and an opaque , non-black underlay is arranged between the two lamination layers , which underlay is placed underneath the unprinted region(s) of the design element.2. The laminated glass according to claim 1 , wherein the underlay has a thickness in the range from 1 to 120 μm.3. The laminated glass according to claim 1 , wherein the opaque claim 1 , non-black underlay has a white color.4. The laminated glass according to claim 1 , wherein the opaque claim 1 , non-black underlay is formed from polyethylene terephthalate.5. The laminated glass according to claim 1 , wherein the pane side on which the design element is printed is an inner side of the outer pane.6. The laminated glass according to claim 1 , wherein the lamination layer situated between the design element and the underlay is clear or tinted.7. The laminated glass according to claim 1 , wherein the design element is surrounded by a full-surface black print claim 1 , wherein the full-surface black ...

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18-03-2021 дата публикации

INVISIBLE EDGE SOLID SUBSTRATE COMPENSATION LAYER FOR AUTOMOTIVE GLAZING

Номер: US20210078388A1
Принадлежит:

Vehicle glazing, which once served just to provide for vision and protect from the elements, has been taking on new functions as the complexity and functionality of modern automobiles has evolved. Performance films and interlayers are often used to add to and enhance the functionality of laminates. These functions include solar control, sound dampening, head up display and variable light transmittance. Recent advances have made it possible to produce electronic circuits on thin transparent substrates that are essentially invisible under normal lighting conditions. While these circuits can be inserted into the laminate and successfully laminated, the edges of the circuit insert are prone to objectionable aesthetics due to mismatch between the substrate and the interlayer index of refraction, thickness and color. The present invention compensates the edge of the solid insert by providing a sheet of a compatible compensation material that the substrate of the insert and which extends to at least the black band or the edge of glass of the laminate making the insert edge essentially invisible. 1. An automotive laminate comprising:an outer glass layer;an inner glass layer;at least two plastic interlayers located between outer and inner glass layers;at least one compensation layer having a glass transition temperature above the temperature in which the at least two plastic interlayers melts in a lamination process; andat least one insert;wherein the least one compensation layer has at least one cutout area; andwherein the at least one insert is placed into the at least one cutout area in the at least one compensation layer.2. The automotive laminate of claim 1 , wherein the gap between the at least one insert and the at least one compensation layer is filled with a resin.3. The automotive laminate of claim 1 , wherein the glass transition temperature of the at least one compensation layer is greater than 130° C.4. The automotive laminate of claim 1 , wherein the at least ...

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22-03-2018 дата публикации

MEANS-OF-TRANSPORT SIDE GLAZING WITH REINFORCED EMERGENCY-EXIT SUBSTRATE

Номер: US20180079181A1
Автор: GASTAL Guillaume
Принадлежит:

A side glazing for a transport vehicle, particularly glazing for a train, the glazing being fixed multiple glazing, the glazing including at least one connecting bridge which is separate from the glazing frame structure and makes a connection between a peripheral edge of the lamination and a surface, situated transversely opposite, on the other side of the glazing cavity. 1. A side glazing for a means of transport , said glazing being fixed multiple glazing , said glazing comprising:an exterior substrate having an exterior face which faces an exterior space, an intermediate face on the opposite side to the exterior face, and a peripheral edge face,an interior substrate having an interior face which faces an interior space, an intermediate face on the opposite side to the interior face, and a peripheral edge face,a glazing frame structure which is situated at the periphery of the intermediate face of said exterior substrate and at the periphery of the intermediate face of said interior substrate and which holds the exterior substrate and the interior substrate together in such a way that the glazing separates said exterior space from said interior space with a glazing cavity situated between the exterior substrate and the interior substrate,and a lamination comprising, on the one hand, at least one main sheet of glass and, on the other hand, a main sheet of plastic, said main sheet of plastic being situated in contact between the intermediate face of said exterior substrate and the main sheet of glass, andat least one connecting bridge which is separate from said glazing frame structure and makes a connection between a peripheral edge of said lamination and a surface, situated transversely opposite, on the other side of said glazing cavity.2. The glazing as claimed in claim 1 , wherein said lamination is not in direct contact with said glazing frame structure or is not directly mechanically connected and/or chemically bonded to said glazing frame structure.3. The ...

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29-03-2018 дата публикации

LUMINOUS AUTOMOTIVE-VEHICLE GLAZING UNIT AND AUTOMOTIVE VEHICLE WITH SUCH A GLAZING UNIT

Номер: US20180086028A1
Принадлежит:

A luminous automotive-vehicle glazing unit includes a first glazing pane, made of organic or mineral glass, of refractive index n of at least 1.4 with first and second main faces; a light source coupled to the first glazing pane; and a light-extracting system including a scattering layer of width of at least 1 cm including scattering dielectric particles bound by a transparent matrix of refractive index n The scattering particles are mainly microparticles that are spaced apart from one another and that include a shell made of a transparent dielectric material and making contact with the transparent matrix, the shell surrounding a core of refractive index n of at most 1.15 and of largest dimension called D in a range extending from 5 μm to 200 μm, the microparticles having a largest dimension D′ smaller than 2D. 1. A luminous automotive-vehicle glazing unit comprising:{'b': 1', '1', '4, 'a glazing module with an edge face and two external main faces, said glazing module including at least one first glazing pane, made of organic or mineral glass, of refractive index n of at least . with first and second main faces;'}a light source optically coupled to the glazing module, the glazing module forming a guide of light emitted by the light source; anda light-extracting system configured to extract the guided light in order to form a scattering zone of width of at least 1 cm, said light-extracting system including a scattering layer comprising scattering dielectric particles bound by a matrix, said scattering layer being associated with one of the first or second main faces;{'b': 2', '1', '1', '2, 'wherein the matrix is transparent and of refractive index n at least equal to n or such that n−n is at most 0.15'}{'b': 3', '3, 'sub': '3', 'and wherein the scattering particles are mainly microparticles that are spaced apart from one another and that comprise a shell made of a transparent dielectric material and making contact with the transparent matrix, said shell surrounding ...

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02-04-2015 дата публикации

GLASS LAMINATE COMPRISING AT LEAST ONE SHAPED PART MADE OF METAL

Номер: US20150093539A1
Принадлежит:

The present application relates to a glass laminate () comprising at least two glass plates (). At least one first polymer film () and also at least one shaped part () made of metal are arranged between said at least two glass plates (). The at least one shaped part () has substantially the same thickness as the at least one first polymer film (). The first polymer film () has a cutout (), in which there is arranged the shaped part (). The shaped part () furthermore has at least one first region () which engages with the at least one first polymer film () in a form-fitting manner in the form of an undercut. 1. A glass laminate comprising at least two glass plates , at least one first polymer film and also at least one shaped part made of metal being arranged between said at least two glass plates , and the at least one shaped part having substantially the same thickness as the at least one first polymer film and being arranged in a cutout in said at least one first polymer film , wherein the at least one shaped part has at least one first region which engages with the at least one first polymer film in a form-fitting manner in the form of an undercut , the at least one shaped part being arranged in the region of an edge of the glass laminate and having a width which is less than 10% of the total length of the edge.2. The glass laminate as claimed in claim 1 , wherein the at least one shaped part has a second region claim 1 , which protrudes beyond the edge of the glass laminate.3. The glass laminate as claimed in claim 2 , wherein the shaped part has at least one connection structure in the at least one second region claim 2 , at least one layer of the at least one first polymer film being arranged between the connection structure and the edge of the glass laminate.4. The glass laminate as claimed in claim 3 , wherein the at least one layer has at least one recess claim 3 , in which there is arranged an element made of a thermoplastic polymer claim 3 , in particular ...

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07-04-2016 дата публикации

LAMINATE, METHOD FOR CUTTING LAMINATE, METHOD FOR PROCESSING LAMINATE, AND DEVICE AND METHOD FOR CUTTING BRITTLE PLATE-LIKE OBJECT

Номер: US20160096345A1
Принадлежит:

Provided is a laminate () obtained by integrally laminating glass sheets () on both surfaces of a resin sheet (). The glass sheets () have a thickness of 300 μm or less and end surfaces () of the glass sheets () are chamfered. 16-. (canceled)7. A manufacturing method for a laminate , comprising:a lamination step of integrally laminating a glass sheet having a thickness of 300 μm or less on at least one of both surfaces of a resin sheet; anda chamfering step of chamfering an end surface of the glass sheet that is integrally laminated on the resin sheet in the lamination step.8. The manufacturing method for a laminate according to claim 7 , wherein the chamfering step comprises chamfering the resin sheet as well.9. The manufacturing method for a laminate according to claim 7 , wherein the lamination step comprises integrally laminating the glass sheet on each of both the surfaces of the resin sheet.1014-. (canceled)15. A cutting method for a laminate claim 7 , comprising carrying out laser fusing by irradiating the laminate with a laser beam from one side thereof claim 7 , the laminate being obtained by integrally laminating glass sheets on both surfaces of a resin sheet claim 7 ,the laser beam having a focal point adjusted inside the laminate at a position that is set within a range of more than 50% and 90% or less of an overall thickness of the laminate from an incident surface side of the laser beam.16. The cutting method for a laminate according to claim 15 , wherein the position of the focal point is set within a range of 60% or more and 80% or less of the overall thickness of the laminate from the incident surface side of the laser beam.17. The cutting method for a laminate according to claim 15 , wherein a value obtained by dividing power of the laser beam by scanning speed of the laser beam is set to 0.001 to 1 W·min/mm.18. The cutting method for a laminate according to claim 15 ,wherein the resin sheet has a thickness of 20 mm or less,wherein the glass sheets ...

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28-03-2019 дата публикации

METHOD FOR PRODUCING A COMPOSITE PANE HAVING AN INFRARED-REFLECTING COATING ON A CARRIER FILM

Номер: US20190091971A1
Принадлежит:

A method for producing a composite pane is presented. A first laminating film is placed on an electrically conductive coating of a carrier film, and the carrier film and the first laminating film are then joined to form a bilayer. The bilayer is arranged on an outer pane such that the first laminating film lies areally on the outer pane, and a second laminating film is arranged on the bilayer such that the second laminating film lies areally on the carrier film. An inner pane is placed on the second laminating film, and a composite pane is formed by autoaclaving a layered stack formed by the panes, films and coatings. 113.-. (canceled)14. A method for producing a composite pane , the method comprising the following steps:a) providing a carrier film having an infrared-reflecting coating;b) placing a first laminating film on the infrared-reflecting coating of the carrier film;c) joining the carrier film and the first laminating film to form a bilayer ;d) arranging the bilayer on one of an outer pane and an inner pane so that the first laminating film lies areally on the one of the outer pane and the inner pane, and arranging a second laminating film on the bilayer so that the second laminating film lies areally on the carrier film;e) placing the other of the outer pane and the inner pane on the second laminating film; i) the outer pane;', 'ii) the bilayer made of the first laminating film and the carrier film having an infrared-reflecting coating;', 'iii) the second laminating film; and', 'iv) the inner pane., 'f) based on the steps a)-e), autoclaving a layered stack to form a composite pane that comprises'}15. The method according to claim 14 , wherein the carrier film and the first laminating film are joined in step c) under pressure at a temperature of 40° C. to 80° C. to form bilayer.16. The method according to claim 14 , wherein step c) further comprises:unrolling the carrier film and the first laminating film from a respective roll;forming the bilayer; ...

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23-04-2015 дата публикации

LAMINATE, METHOD FOR CUTTING LAMINATE, METHOD FOR PROCESSING LAMINATE, AND DEVICE AND METHOD FOR CUTTING BRITTLE PLATE-LIKE OBJECT

Номер: US20150110991A1
Принадлежит:

Provided is a laminate () obtained by integrally laminating glass sheets () on both surfaces of a resin sheet (). The glass sheets () have a thickness of 300 μm or less and end surfaces () of the glass sheets () are chamfered. 1. A laminate , comprising:a resin sheet; and 'the glass sheet being integrally laminated on at least one of both surfaces of the resin sheet,', 'a glass sheet having a thickness of 300 μm or less,'}wherein an end surface of the glass sheet is chamfered.2. The laminate according to claim 1 , wherein at least a part of an end surface of the resin sheet protrudes with respect to the end surface of the glass sheet.3. The laminate according to claim 1 , wherein the glass sheet is integrally laminated on each of both the surfaces of the resin sheet.4. The laminate according to claim 1 , wherein a corner portion formed by crossing adjacent two edges has a curved shape or a polygonal shape obtained by combining obtuse angles.5. The laminate according to claim 1 , further comprising a deformed portion formed of a projecting portion or a depressed portion on an outer periphery of the laminate claim 1 ,wherein the deformed portion comprises a bending portion, and the bending portion has a curved shape.6. The laminate according to claim 1 , further comprising an opening portion formed in a flat surface of the laminate claim 1 ,wherein the opening portion comprises a bending portion on a periphery thereof, and the bending portion has a curved shape.7. A manufacturing method for a laminate claim 1 , comprising:a lamination step of integrally laminating a glass sheet having a thickness of 300 μm or less on at least one of both surfaces of a resin sheet; anda chamfering step of chamfering an end surface of the glass sheet that is integrally laminated on the resin sheet in the lamination step.8. The manufacturing method for a laminate according to claim 7 , wherein the chamfering step comprises chamfering the resin sheet as well.9. The manufacturing method ...

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29-04-2021 дата публикации

Laminated glazing

Номер: US20210122145A1
Автор: Massimo MICHETTI
Принадлежит: Pilkington Group Ltd

A laminated glazing comprising first and second sheets of glass joined together by an interlayer structure comprising at least a first layer of adhesive interlayer material is disclosed. The surface compressive stress in a central region of a first major surface of the first sheet of glass is dependent upon the thickness of the first sheet of glass. For a thickness t of the first sheet of glass between 1.4 mm and 2.6 mm the minimum surface compressive stress CS min (in MPa) in the central region of the first major surface of the first sheet of glass is given by CS min (MPa)=21.0×t 3 −118.6×t 2 +236.9×t−a 1 , wherein a 1 is between 135 MPa and 140 MPa. The second sheet of glass may be a sheet of chemically strengthened glass having a thickness between 0.3 mm and 1.0 mm. The laminated glazing may be fixed or movable in an aperture in a vehicle.

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29-04-2021 дата публикации

Laminated glass retention system

Номер: US20210123292A1
Принадлежит: Andersen Corp

Embodiments herein relate to a system and method for retaining an insulated glass subassembly including a laminated layer of glass within a frame of a fenestration unit providing protection against wind borne debris. A fenestration unit can include a frame member defining a channel with a lower end and an attachment surface thereon along with a glass subassembly including a proximal end received and seated within the channel and an outside facing surface of the exterior pane proximate the lower end of the channel. A retention member can engage the interior laminate pane, and a glazing material can be on the attachment surface at the lower end of the channel. The outside facing surface of the glass subassembly can be attached to the channel of the frame member with the glazing material. In various embodiments, methods of making a retention member are included herein. Other embodiments are also included herein.

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26-04-2018 дата публикации

PANE WITH THERMAL-RADIATION-REFLECTING COATING AND FASTENING OR SEALING ELEMENT ATTACHED THERETO

Номер: US20180111355A1
Автор: HAGEN Jan, MANZ Florian
Принадлежит:

A pane for separating an interior from an external environment, at least including a substrate, and a thermal-radiation-reflecting coating on the interior-side surface of the substrate is disclosed. The coating has at least one functional layer containing a transparent conductive oxide and a topmost layer containing silicon dioxide, and a polymeric fastening or sealing element on the thermal-radiation-reflecting coating. 1. A pane for separating an interior from an external environment , comprising:a substrate;a thermal-radiation-reflecting coating on the interior-side surface of the substrate, the thermal-radiation-reflecting coating having at least one functional layer containing a transparent conductive oxide and a topmost layer containing silicon dioxide; anda polymeric fastening or sealing element on the thermal-radiation-reflecting coating.2. The pane according to claim 1 , wherein the polymeric fastening or sealing element is arranged in direct contact with the thermal-radiation-reflecting coating.3. The pane according to claim 1 , wherein an opaque masking print is arranged between the thermal-radiation-reflecting coating and the fastening or sealing element.4. The pane according to claim 1 , wherein the polymeric fastening or sealing element comprises a sealing lip claim 1 , an adhesive bead for fastening the pane or an adhesive for fastening an attachment part on the pane.5. The pane according to claim 1 , wherein the fastening or sealing element contains polyurethane claim 1 , polyolefin claim 1 , polysulfide claim 1 , poly-epoxy claim 1 , rubber such as natural rubber claim 1 , nitrile rubber (NBR) claim 1 , styrene butadiene rubber claim 1 , butadiene acrylonitrile rubber claim 1 , ethylene propylene diene rubber claim 1 , silicone rubber such as RTV—(room-temperature-vulcanizing) silicone rubber claim 1 , HTV—(high-temperature-vulcanizing) silicone rubber claim 1 , peroxide-vulcanising silicone rubber claim 1 , or addition-vulcanising silicone rubber ...

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26-04-2018 дата публикации

VEHICLE COMPOSITE PANE WITH AN INTEGRATED LIGHT SENSOR

Номер: US20180111356A1
Принадлежит:

A vehicle composite pane with an integrated light sensor is presented. The vehicle composite pane includes an outer pane and an inner pane that are bonded to one another via a thermoplastic intermediate layer. A photodiode situated on a circuit board is arranged between the outer pane and the inner pane, wherein the photodiode is a surface-mounted device (SMD) component. 1. A vehicle composite pane with an integrated light sensor , comprising:an outer pane; and wherein the outer pane and the inner pane are bonded to one another via a thermoplastic intermediate layer,', 'wherein one or more photodiodes situated on a circuit board are arranged between the outer pane and the inner pane, and', 'wherein each of the one or more photodiodes is a surface-mounted device component., 'an inner pane;'}2. The vehicle composite pane according to claim 1 , wherein the circuit board is implemented as a flexible circuit board.3. The vehicle composite pane according to claim 1 , wherein the one or more photodiodes comprises a plurality of photodiodes arranged on the circuit board.4. The vehicle composite pane according to claim 3 , wherein the plurality of photodiodes are arranged on the circuit board as serially connected groups of parallel connected photodiodes.5. The vehicle composite pane according to claim 4 , wherein the plurality of the photodiodes are arranged as a matrix with rows and columns and wherein photodiodes of the parallel connected photodiodes are arranged neither all in one column nor all in one row.6. The vehicle composite pane according to claim 5 , wherein a distance between adjacent photodiodes of a row is at least 5 cm.7. The vehicle composite pane according to claim 3 , wherein the circuit board has a section with a width of at least 15 cm.8. The vehicle composite pane according to claim 7 , wherein the one or more photodiodes are arranged in the section of the circuit board.9. The vehicle composite pane according to claim 1 , wherein the one or more ...

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09-06-2022 дата публикации

GLASS RESIN LAMINATE

Номер: US20220176680A1
Принадлежит:

Provided is a glass resin laminate (), including: a resin layer (); a glass sheet (); an adhesive layer () configured to bond the glass sheet () and the resin layer (); and a functional film () interposed in the adhesive layer (). The adhesive layer () includes a first portion () positioned between the resin layer () and the functional film (), a second portion () positioned between the glass sheet () and the functional film (), and a fused portion () obtained by fusing an end portion of the first portion () and an end portion of the second portion (). 16-. (canceled)7. A method for manufacturing a glass resin laminate , the glass resin laminate comprising:a resin layer;a glass sheet;an adhesive layer configured to bond the glass sheet and the resin layer; anda functional film interposed in the adhesive layer,the method comprising:a laminating step for superimposing the resin layer, the glass sheet, an adhesive sheet for forming the adhesive layer, and the functional film; anda heating step for heating the adhesive sheet,wherein the adhesive sheet comprises a first adhesive sheet positioned between the resin layer and the functional film, and a second adhesive sheet positioned between the glass sheet and the functional film,wherein an area of the first adhesive sheet and an area of the second adhesive sheet are set to be larger than an area of the glass sheet,wherein, in the laminating step, an end portion of the first adhesive sheet and an end portion of the second adhesive sheet are arranged at an outer side with respect to an end portion of the glass sheet, andwherein, in the heating step, a fused portion where the end portion of the first adhesive sheet and the end portion of the second adhesive sheet are fused together is formed.8. The method of manufacturing a glass resin laminate according to claim 7 ,wherein, in the heating step, the glass sheet is embedded in the second adhesive sheet that has been softened by the heating to cover the end portion of the ...

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27-04-2017 дата публикации

LAMINATING THIN GLASS STRUCTURES

Номер: US20170113440A1
Принадлежит:

A method for finishing an edge of a glass laminate structure comprising the steps of assembling a glass laminate structure having a first glass sheet, a second glass sheet and an interlayer material intermediate the first and second glass sheets and placing a compressive material on a first edge of the assembled structure. A vacuum can be applied to a second edge of the assembled structure and the assembled structure heated to a predetermined temperature at or above a softening temperature of the interlayer material. The vacuum and temperature can be maintained for a predetermined period of time whereby the compressive material provides an in situ finish for the first edge of the glass laminate structure. 1. A method for finishing an edge of a glass laminate structure comprising the steps of:assembling a glass laminate structure having a first glass sheet, a second glass sheet and an interlayer material intermediate the first and second glass sheets;placing a compressive material on a first edge of the assembled structure;applying a vacuum to a second edge of the assembled structure;heating the assembled structure to a predetermined temperature at or above a softening temperature of the interlayer material;maintaining the vacuum and temperature for a predetermined period of time,wherein the compressive material provides an in situ finish for the first edge of the glass laminate structure.2. The method of claim 1 , wherein claim 1 , the polymer interlayer is selected from the group consisting of polyvinyl butyral claim 1 , acoustic PVB claim 1 , ethylene vinyl acetate (EVA) claim 1 , thermoplastic polyurethane (TPU) claim 1 , SentryGlas (SG) claim 1 , an ionomer claim 1 , and combinations thereof.3. The method of claim 1 , wherein the interlayer material has a modulus of rigidity of greater than about 100 MPa at 30° C. to about 100 MPa at about 50° C.4. The method of claim 1 , wherein the first glass sheet has a thickness not exceeding about 2.0 mm claim 1 , not ...

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13-05-2021 дата публикации

COMPOSITE PANE WITH AN ELECTRICAL LOAD

Номер: US20210138766A1
Автор: Klein Marcel
Принадлежит:

A composite pane with an electrical load, includes an outer pane and an inner pane that are joined to one another via a thermoplastic intermediate layer, wherein the thermoplastic intermediate layer has a recess that has a receiving opening, the receiving opening is dimensioned such that it is designed for accommodating the electrical load in the recess, and the electrical load is arranged in the recess. 1. Composite pane with an electrical load , comprising an outer pane and an inner pane that are joined to one another via a thermoplastic intermediate layer , whereinthe thermoplastic intermediate layer has a recess that has a receiving opening,the receiving opening is dimensioned such that the receiving opening is designed for accommodating the electrical load in the recess, andthe electrical load is arranged in the recess.2. The composite pane according to claim 1 , wherein the electrical load has a display device.3. The composite pane according to claim 1 , wherein the recess is dimensioned such that the recess can accommodate the electrical load in a flush manner.4. The composite pane according to claim 1 , wherein no connection is provided between the electrical load and the intermediate layer.5. The composite pane according to claim 1 , wherein the recess has a holding device claim 1 , in which the electrical load is mounted.6. The composite pane according to claim 1 , wherein the receiving opening is slit-shaped.7. The composite pane according to claim 1 , wherein a connection element of the electrical load extends outward out of the receiving opening.8. System for reproducing image data claim 1 , comprising a camera for recording images of the surroundings of a vehicle and a composite pane according to provided with a display for displaying the recorded images.9. Method for producing a composite pane according to with an electrical load claim 1 , comprisinga) providing a thermoplastic intermediate layer,b) cutting out a recess in an edge region of the ...

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13-05-2021 дата публикации

Methods of bonding substrates together

Номер: US20210139741A1
Принадлежит: 3M Innovative Properties Co

Methods of bonding together substrates that do not require use of primers, mixing, fixturing, or autoclaving. These methods can include the steps of disposing an adhesive layer on a bonding surface of either substrate, the adhesive layer comprising a curable composition that is dimensionally stable at ambient conditions; either before or after disposing the adhesive layer on the bonding surface, irradiating the adhesive layer with ultraviolet radiation to initiate curing of the curable composition; placing one substrate so as to be bonded to the other substrate by the adhesive layer; and allowing the adhesive layer to cure.

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16-04-2020 дата публикации

Automotive laminate with hole

Номер: US20200114624A1
Принадлежит: AGP America SA

Laminated glazing, once limited to just the windshield, is finding more and more application in other positions on the vehicle due to its ability to improve passenger safety, security and comfort. Problems are encountered when producing a laminated version of a tempered part with holes, because tempered glass is 4 to 5 times stronger than annealed glass. The laminate of the invention has a hole in the exterior glass layer. An insert is bonded to a cutout in the area of the hole on the interior glass layer so as to reinforce the hole and distribute the load over a wider area. The result is a laminated glazing with one or more holes that has the reliability of and is a direct replacement for a tempered part.

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23-04-2020 дата публикации

GLAZING WITH LAMINATED INSERT OBSCURATION BAND

Номер: US20200122436A1
Принадлежит: AGP AMERICA S.A.

Glazing mounting systems, that make use of an adhesive to bond the glazing to a vehicle opening, require an obscuration to hide the adhesive from view and to protect the adhesive from ultra-violet radiation. An enamel ink is typically used to print the obscuration on the glass. However, glass with certain types of coatings and glass which will be chemically tempered is not compatible with enamel frits. Organic inks can be used but are expensive, difficult to work with and not as durable as an enamel frit. The obscuration of the present invention is produced by replacing the printed obscuration with an insert, which serves the same function of an obscuration printed on the glass, which is laminated as a part of the glazing. 1. A laminate comprising:a) at least one glass or rigid transparent plastic layer having oppositely disposed major faces;b) at least one bonding plastic layer having oppositely disposed major faces;c) an obscuration insert having oppositely disposed major faces;d) at least one additional bonding plastic layer having oppositely disposed major faces;e) at least one additional glass or rigid transparent plastic layer having oppositely disposed major faces;wherein the obscuration insert is positioned between the opposite faces of the at least one and the at least one additional plastic bonding layers;wherein the two opposite major faces of the obscuration insert are bonded to the corresponding adjacent major faces of the at least one plastic bonding layer and the at least one additional plastic bonding layer;wherein the surface of the at least one glass or rigid transparent plastic layer is bonded to the at least one bonding layer major surface opposite to the at least one bonding layer major surface bonded to the obscuration insert of the at least one bonding layer.wherein the major surface of the at least one additional glass or rigid transparent plastic layer is bonded to the at least one additional bonding layer major surface opposite to the major ...

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19-05-2016 дата публикации

Electrochromic Devices and Manufacturing Methods Therefore

Номер: US20160136930A1
Автор: Greger GREGARD, Roger Vogt
Принадлежит: CHROMOGENICS AB

A method for manufacturing of laminated electrochromic devices in a flexible and easy manner comprises provision ( 210 ) of a solid-electrochromic-layer layered polymer-based structure. The solid-electrochromic-layer layered polymer-based structure is positioned ( 240 ) between a first glass pane and a second glass pane, with a respective interlayer film between each side of the solid-electrochromic-layer layered polymer-based structure and the first glass pane and the second glass pane, respectively, forming a stack. The stack is exposed ( 250 ) to a lamination temperature, which is at most 120° C., for a hot lamination time period. The stack is cooled-down ( 252 ) at at least atmospheric pressure after the hot lamination time period. Laminated electrochromic devices produced by such a method are also disclosed.

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09-05-2019 дата публикации

COVER MEMBER AND DISPLAY DEVICE

Номер: US20190134940A1
Принадлежит: AGC Inc.

To provide a cover member excellent in edge safety, and a display device in which said cover member is used. A cover member which covers a display panel of a display device and which has a front surface that does not face the display panel and a rear surface that faces the display panel, said cover member being a laminate in which a first glass plate constituting said front surface and a second glass plate constituting said rear surface are bonded via an intermediate film interposed therebetween, wherein the first glass plate has a first inside chamfer which is a chamfer on the intermediate film side, and the first inside chamfer and the second glass plate or the intermediate film are bonded by a resin. 1. A cover member which covers a display panel of a display device and which has a front surface that does not face said display panel and a rear surface that faces said display panel ,said cover member being a laminate in which a first glass plate constituting said front surface and a second glass plate constituting said rear surface are bonded via an intermediate film interposed therebetween, whereinthe first glass plate has a first inside chamfer which is a chamfer on the intermediate film side, andthe first inside chamfer and the second glass plate or the intermediate film are bonded by a resin.2. The cover member according to claim 1 , wherein the surface roughness Ra of said first inside chamfer is at least 100 nm.3. The cover member according to claim 1 , wherein the second glass plate has a second inside chamfer which is a chamfer on the intermediate film side claim 1 , andsaid resin is adhered to said second inside chamfer.4. The cover member according to claim 1 , wherein the protruding amount of said resin from the side surface positions of the first glass plate and the second glass plate is at most 0.1 mm.5. The cover member according to claim 1 , wherein said resin is the same resin as a resin constituting said intermediate film.6. The cover member ...

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30-04-2020 дата публикации

LAMINATED GLASS

Номер: US20200130326A1
Автор: AOKI Tokihiko
Принадлежит: AGC Inc.

To provide a laminated glass excellent in edge foaming resistance and rigidity. Laminated glass in which a pair of glass plates and an intermediate film provided between the pair of glass plates, are laminated, wherein the shear storage modulus of said intermediate film is from 2 to 100 MPa, and the outer peripheral edge of the intermediate film is present inside than the outer peripheral edges of the two glass plates constituting said pair of glass panels, at least at a part of the entire outer periphery of the laminated glass 1. A laminated glass in which a pair of glass plates and an intermediate film containing a plasticizer , provided between the pair of glass plates , are laminated , characterized in that the shear storage modulus of the intermediate film is from 2 to 100 MPa , and the outer peripheral edge of the intermediate film is present inside than the outer peripheral edges of the two glass plates constituting the pair of glass plates , at least at a part of the entire outer periphery of the laminated glass.2. The laminated glass according to claim 1 , wherein the outer peripheral edge of the intermediate film is present inside by from 0.2 to 1.0 mm than the outer peripheral edges of the two glass plates constituting the pair of glass plates.3. The laminated glass according to claim 1 , wherein the intermediate film is such that in a region within 5 mm inward from the outer peripheral edge of the intermediate film claim 1 , the amount of the plasticizer per unit area of the principal surface of the intermediate film is from 0.05 to 0.22 mg/mm.4. The laminated glass according to claim 1 , wherein said pair of glass plates are such that the ultraviolet transmittance Tof at least one of the glass plates is at most 65%.5. The laminated glass according to claim 1 , wherein said pair of glass plates are such that the solar transmittance Tof at least one of the glass plates is at most 75%.6. The laminated glass according to claim 1 , wherein said pair of glass ...

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30-04-2020 дата публикации

GLASS RESIN LAMINATE

Номер: US20200130327A1
Принадлежит:

Provided is a glass resin laminate (), including: a resin layer (); a glass sheet (); an adhesive layer () configured to bond the glass sheet () and the resin layer (); and a functional film () interposed in the adhesive layer (). The adhesive layer () includes a first portion () positioned between the resin layer () and the functional film (), a second portion () positioned between the glass sheet () and the functional film (), and a fused portion () obtained by fusing an end portion of the first portion () and an end portion of the second portion (). 1. A glass resin laminate , comprising:a resin layer;a glass sheet;an adhesive layer configured to bond the glass sheet and the resin layer; anda functional film interposed in the adhesive layer,wherein the adhesive layer comprises a first portion positioned between the resin layer and the functional film, a second portion positioned between the glass sheet and the functional film, and a fused portion obtained by fusing an end portion of the first portion and an end portion of the second portion.2. The glass resin laminate according to claim 1 ,wherein an area of the functional film is set to be smaller than an area of the glass sheet, andwherein an end portion of the functional film is arranged inside with respect to an end portion of the glass sheet.3. The glass resin laminate according to claim 1 ,wherein an area of the glass sheet is set to be smaller than an area of the resin layer, andwherein an end portion of the glass sheet is arranged inside with respect to an end portion of the resin layer.4. The glass resin laminate according to claim 3 , wherein the fused portion is exposed between the end portion of the resin layer and the end portion of the glass sheet.5. The glass resin laminate according to claim 1 ,wherein the resin layer comprises a first surface and a second surface,wherein the glass sheet comprises a first glass sheet laminated on the first surface and a second glass sheet laminated on the second ...

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10-06-2021 дата публикации

CLADDING ELEMENT

Номер: US20210170723A1
Автор: Feuerhuber Richard
Принадлежит:

A cladding element may have a composite body made up of two rectangular cover layers, of which at least the outer cover layer may consist of glass, and an inlay laminated in between the two cover layers. The composite body may include fastening tabs laminated in between the inner cover layer and the inlay on two opposing edge sides and an edge terminus profile protruding beyond the inner cover layer on one of the two edge sides between the fastening tabs, which may form an attachment web projecting from the protruding longitudinal edge for an identical cladding element. To provide advantageous construction conditions, the edge side opposite to the edge terminus profile may be covered by a cover strip frontally overlapped by the outer cover layer, which may be laminated like the edge terminus profile in between the inner cover layer and the inlay. 1. A cladding element comprising:a composite body including:two rectangular cover layers including an inner cover layer and an outer cover layer, of which at least the outer cover layer is manufactured from glass,an inlay laminated in between the two cover layers, andfastening tabs laminated in between the inner cover layer and the inlay on two opposing edge sides of the composite body, andan edge terminus profile protruding beyond the inner cover layer on one of the two opposing edge sides between the fastening tabs, which forms an attachment web projecting from a protruding longitudinal edge of the composite body for an identical cladding element; anda cover strip covering an edge side of the two opposing edge sides that is opposite to the edge terminus profile, wherein the cover strip is frontally overlapped by the outer cover layer, and is laminated in between the inner cover layer and the inlay,wherein the fastening tabs include a terminus strip covering an end face of the inlay and an end face of the outer cover layer.2. The cladding element according to claim 1 , wherein an edge of the outer cover layer overlapping ...

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10-06-2021 дата публикации

ILLUMINATING GLAZING UNIT

Номер: US20210170724A1
Принадлежит:

An illuminating glazing unit includes a first transparent sheet of glass drilled with a through-hole delimited by an internal wall; at least one inorganic light-emitting diode including an emission surface emitting light in a main direction of emission substantially orthogonal to the emission surface; and a light guide element including an input face arranged facing the emission surface, a body and an output face arranged facing the internal wall, the light-emitting diode having an emission cone of at least 80°. 1. An illuminating glazing unit comprising:a first transparent sheet of glass or plastic drilled with a through-hole delimited by an internal wall;at least one inorganic light-emitting diode comprising an emission surface for emitting light in a main direction of emission substantially orthogonal to the emission surface, anda light guide element comprising an input face arranged facing the emission surface, a body and an output face arranged facing the internal wall, said light-emitting diode having an emission cone of at least 80°.2. The glazing unit as claimed in claim 1 , wherein the input face is spaced away from the emission surface claim 1 , or is in optical contact via an adhesive or is in physical contact claim 1 , and/or the output face is spaced away from the internal wall or is in optical contact via an adhesive or is in physical contact.3. The glazing unit as claimed in claim 1 , wherein the input face and the body are housed in the through-hole claim 1 , the input face being a non-planar surface claim 1 , and/or the output face being a non-planar surface.4. The glazing unit as claimed in claim 3 , wherein the non-planar input face is equipped with light redirection system belonging to the following list: Fresnel lenses claim 3 , convex lenses claim 3 , gratings claim 3 , arrays of convex micro lenses and a collimation system claim 3 , the redirection system forming an integral part of the body of the guide element claim 3 , or the redirection ...

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21-08-2014 дата публикации

Manufacture of laminated glazing

Номер: US20140234576A1
Принадлежит: Saint Gobain Glass France SAS

A method for manufacturing a laminated glass panel, which includes at least two glass substrates and at least one intermediate layer made of a polymeric material arranged between the substrates, the method including in the following order: the bending of the substrates; the controlled cooling of the substrates; and the formation of a laminated assembly that includes the substrates and the intermediate layer; the cutting of the laminated assembly straight through the entire thickness thereof along a line on one of the main surfaces thereof, the controlled cooling including general controlled cooling and local controlled cooling of an area that includes the cutting line, the local controlled cooling being faster than the general controlled cooling.

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07-06-2018 дата публикации

Laminated glazing comprising a clip fastening profiled strip with additional polymer tape and profiled strip

Номер: US20180154752A1
Принадлежит: Saint Gobain Glass France SAS

A glazing includes a laminated glazed element. The glazing includes a profiled strip including a groove for the clip fastening of a cover piece. The glazing further includes a polymer tape situated between the groove and an edge face of an interior substrate, or even also between a peripheral edge of an interior face and an interior flange.

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22-09-2022 дата публикации

METHODS OF BONDING SUBSTRATES TOGETHER

Номер: US20220298383A1
Принадлежит:

Methods of bonding together substrates that do not require use of primers, mixing, fixturing, or autoclaving. These methods can include the steps of disposing an adhesive layer on a bonding surface of either substrate, the adhesive layer comprising a curable composition that is dimensionally stable at ambient conditions; either before or after disposing the adhesive layer on the bonding surface, irradiating the adhesive layer with ultraviolet radiation to initiate curing of the curable composition; placing one substrate so as to be bonded to the other substrate by the adhesive layer; and allowing the adhesive layer to cure. 1. A method of bonding two substrates together , said method comprising:providing the two substrates;disposing an adhesive composition on a bonding surface each of the substrates, the adhesive composition comprising an ultraviolet radiation curable composition;irradiating the adhesive composition with ultraviolet radiation from an ultraviolet radiation source to form an irradiated adhesive composition and cause curing of the curable composition; andallowing the irradiated adhesive composition to cure as a result of said irradiating,wherein the curable composition comprises a photoinitiator, the photoinitiator has an ultraviolet absorption curve characterized by a highest wavelength absorption peak measured at a concentration of about 0.03 wt % in acetonitrile solution, and the ultraviolet radiation has a spectral power distribution offset from the wavelength of the highest wavelength absorption peak.2. The method of claim 1 , wherein either (a) the ultraviolet radiation source produces ultraviolet radiation having a spectral power distribution characterized by a narrow wavelength distribution within a 50 nm range or less claim 1 , (b) the spectral power distribution substantially excludes wavelengths below about 280 nm claim 1 , (c) the highest wavelength absorption peak is located at a wavelength of at most about 395 nm claim 1 , (d) the ...

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07-06-2018 дата публикации

DISPLAY DEVICE

Номер: US20180157092A1
Автор: JUNG Minsu, KIM Youngnam
Принадлежит:

A display device includes a display panel, a support frame including a plurality of straight portions located at two adjacent outer side surfaces of the display panel and having a substantially equal cross-section and a curved portion connecting the plurality of straight portions and having a curvature, a plurality of protrusion frames each extending from a straight portion of the plurality of straight portions of the support frame toward an inner portion of the display panel, and a mold portion overlapping the plurality of protrusion frames to be joined with the plurality of protrusion frames and being located along an inner surface of the curved portion of the support frame. 1. A display device comprising:a display panel;a support frame comprising a plurality of straight portions located at two adjacent outer side surfaces of the display panel and having a substantially equal cross-section and a curved portion connecting the plurality of straight portions and having a curvature;a plurality of protrusion frames each extending from a straight portion of the plurality of straight portions of the support frame toward an inner portion of the display panel; anda mold portion overlapping the plurality of protrusion frames to be joined with the plurality of protrusion frames and being located along an inner surface of the curved portion of the support frame.2. The display device as claimed in claim 1 , wherein the straight portion and the curved portion of the support frame have a substantially equal cross-sectional area.3. The display device as claimed in claim 2 , wherein the straight portion and the curved portion of the support frame are unitary.4. The display device as claimed in claim 3 , wherein a protrusion frame of the plurality of protrusion frames and the straight portion of the support frame are unitary.5. The display device as claimed in claim 3 , wherein the mold portion contacts an inner side of the curved portion of the support frame.6. The display device ...

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24-06-2021 дата публикации

GLAZING UNIT, IN PARTICULAR FOR AERONAUTICS, ABLE TO BE BLOCKED IN ITS RECEIVING OPENING IN THE EVENT OF BREAKAGE

Номер: US20210187913A1
Принадлежит:

A window pane includes at least one structural substrate referred to as interior substrate, intended to face toward a host structure within which the window pane is intended to be fixed, and having a face, referred to as interior face, wherein the interior face of the substrate includes, projecting therefrom and at the edge or near the edge and along at least one of the sides of the window pane, at least one male or female retaining element intended to collaborate with at least one respectively female or male retaining shape arranged in the host structure of the window pane. 1. A window pane comprising an interior structural substrate , intended to face toward a host structure within which the window pane is to be fixed , and having an interior face the window pane further comprising several substrates arranged as a laminate and said interior face of the interior substrate comprising , projecting therefrom and at an edge or near the edge and along at least one of the sides of the window pane , at least one male or female retaining element configured to collaborate with at least one respectively female or male retaining shape arranged in the host structure of the window pane so that the female element constitutes a host housing creating abutment planes for the male element , the male element to be placed in abutment in the housing parallel to the interior substrate and laterally blocked on its two sides.2. The window pane as claimed in claim 1 , wherein said at least one male or female retaining element is an added component which is secured to the interior face of the substrate.3. The window pane as claimed in claim 1 , wherein the interior structural substrate is made of glass or of plastic.4. The window pane as claimed in claim 1 , wherein the interior structural substrate is made of plastic and said at least one male or female retaining element is also made of plastic claim 1 , being incorporated into the body of the substrate as a result of the monobloc ...

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15-06-2017 дата публикации

AUTOMOTIVE GLASS BLACKOUT AREA

Номер: US20170165944A1
Принадлежит:

An automotive glass for a vehicle is provided by a glass panel including an exterior layer defining a non-ceramic UV-blocking band on an edge of the glass panel. In an embodiment, the exterior layer is a polymer film sheet sized to match a size dimension of the glass panel. The polymer film sheet may include a tinted portion bordering a substantially transparent interior. In another embodiment, the exterior layer is a non-ceramic paint applied to a border of the glass panel. 1. A glass panel for a vehicle , comprising an exterior layer defining a non-ceramic UV-blocking band on an edge of the glass panel.2. The glass panel of claim 1 , wherein the exterior layer defining the non-ceramic UV-blocking band is a polymer film sheet sized to match a size dimension of the glass panel.3. The glass panel of claim 2 , wherein the polymer film sheet comprises a tinted portion bordering a substantially transparent interior.4. The glass panel of claim 2 , wherein the polymer film sheet is attached to the glass panel by an adhesive.5. The glass panel of claim 2 , wherein the polymer film is selected from the group consisting of a clear-coated polyvinyl chloride (PVC) claim 2 , a PVC claim 2 , and a clear-coated polyurethane (PU).6. The glass panel of claim 1 , wherein the exterior layer is a non-ceramic paint applied to a border of the glass panel to define the non-ceramic UV-blocking band.7. The glass panel of claim 6 , wherein the non-ceramic paint is applied to the glass panel border using a template.8. The glass panel of claim 1 , wherein the glass panel is shaped to a desired configuration prior to inclusion of the exterior layer.9. A vehicle including the glass panel of .10. A method for manufacturing an automotive glass panel claim 1 , comprising:providing a glass panel; andapplying an exterior layer to the glass panel, the exterior layer defining at least a non-ceramic UV-blocking band bordering the glass panel.11. The method of claim 10 , comprising applying a polymer ...

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29-09-2022 дата публикации

SMALL RADII COMPLEX SHAPE LAMINATED GLAZING

Номер: US20220305760A1
Принадлежит:

It is now possible to economically produce, in series production, automotive glazing that has complex small radii feature lines (). Such feature lines () are desirable as they can improve the stiffness of the glazing as well as contribute to the overall aesthetic and differentiation of the vehicle, allowing body lines to blend into and continue in the glazing. However, traditional automotive laminating methods do not lend themselves well to this type of product. Typically, the offset between the mating surfaces of the laminate must be very uniform. Such uniformity is difficult to achieve when producing small radii features. Rather than bending multiple layers with small radii feature lines that can be nested and subsequently laminated using standard plastic automotive interlayers, the invention makes use of a two part method for laminating, a dry lamination process and a wet lamination process, which requires only that the feature lines () be present in the outer glass layer (). 1. An automotive laminated glazing with small radii features lines comprising:an outer glass layer with small radii feature lines having interior and exterior surfaces;a cured laminating resin; and an inner glass layer having interior and exterior surfaces; and', 'at least one plastic bonding layer facing the interior surface of the inner glass layer;, 'a first stack of components comprising'}wherein the first stack of components is disposed on and bonded to the interior surface of the outer glass layer by said cured laminating resin, such that the interior surface of the outer glass layer is facing said at least plastic bonding interlayer such that the at least plastic bonding interlayer is located between the inner and outer glass layers.2. The automotive laminated glazing according to claim 1 , wherein the first stack of components further comprising: a middle layer having interior and exterior surfaces; wherein the at least one plastic bonding layer is located between interior surfaces ...

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21-05-2020 дата публикации

LAMINATED GLASS PANE AND METHOD FOR PRODUCTION THEREOF

Номер: US20200156351A1
Принадлежит:

A laminated glass pane having a first glass layer and a second glass layer, wherein at least one first electrically conducting structure and a second electrically conducting structure are arranged between the first glass layer and the second glass layer, wherein the first electrically conducting structure and the second electrically conducting structure are arranged spaced apart from one another, wherein the first electrically conducting structure at least partially overlaps the second electrically conducting structure in a perpendicular orientation relative to the first glass layer, wherein the first electrically conducting structure is associated with a first electrical element, wherein the first electrical element is a capacitive sensor. 1. Laminated glass pane having a first glass layer and a second glass layer , wherein at least one first electrically conducting structure and a second electrically conducting structure are arranged between the first glass layer and the second glass layer , wherein the first electrically conducting structure and the second electrically conducting structure are arranged spaced apart from one another , wherein the first electrically conducting structure at least partially overlaps the second electrically conducting structure in a perpendicular orientation relative to the first glass layer , wherein the first electrically conducting structure is associated with a first electrical element , and wherein the first electrical element is a capacitive sensor.2. The laminated glass pane according to claim 1 , wherein the second electrically conducting layer is associated with a second electrical element.3. The laminated glass pane according to claim 1 , wherein the laminated glass pane has a black print at least partially at a location of the first electrically conducting structure.4. The laminated glass pane according to wherein the laminated glass pane further has at least one combination film between the first glass layer and the second ...

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21-06-2018 дата публикации

Pane arrangement with pane with low-e coating and capacitive switching region

Номер: US20180175857A1
Принадлежит: Saint Gobain Glass France SAS

A pane arrangement having a pane with an inner surface and an outer surface, a low-E coating arranged on the inner surface of the pane. The pane arrangement having a coating-free first partition line formed in the low-E coating. A capacitive switching region is electrically isolated from a surrounding region of the low-E coating. The surrounding region surrounds the capacitive switching region in sections. The capacitive switching region has a contact region, a supply line region and a first connection region. The supply line region electrically connects the contact region to the first connection region. A coating-free second partition line is formed in the low-E coating. The surrounding region is electrically isolated from an outer region of the low-E coating. The outer region surrounds the surrounding region. A capacitive sensor electronics system is electrically connected to the first connection region of the capacitive switching region and to the surrounding region by a second connection region.

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22-07-2021 дата публикации

Laminated vehicle glazing having a stiff interlayer

Номер: US20210221101A1
Автор: Wladislaw Bronstein
Принадлежит: Central Glass Co Ltd

Disclosed generally herein is a laminated vehicle glazing including first and second glass sheets and a polymer interlayer interposed therebetween. The interlayer includes a major part and a stiff part adjacent to the major part. The stiff part does not surround the major part, such that the major part is along at least one edge of the laminated vehicle glazing. The stiff part includes at least one layer made of a material that has a higher Young's modulus than that of the material used in the major part. Young's modulus in the thickness direction of the stiff part is higher than that of the major part.

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22-07-2021 дата публикации

AUTOMOTIVE LAMINATE WITH SUPERIOR CAMERA WINDOW

Номер: US20210221302A1
Принадлежит:

The use of camera based safety systems is growing at a rapid rate in modern automobiles. As the industry moves for full autonomous capability, the number of cameras required is increasing. At the same time, windshields, where many of the cameras are mounted are becoming larger and more complex in shape. This presents problems in the area of camera optics. For one, the camera is looking out through at least two layers of bent glass bonded together by a third layer of plastic. Mismatches in the refractive index can result in a double image. The curvature of the glass turns the window into a lens and, in conjunction with the often low installation angle, can reduce the optical clarity of the camera field of view. The laminate of the invention has a cutout in the area of the camera(s) on the interior glass layer where the cameras are mounted. 1. A laminated glazing having a camera area comprising:an exterior glass layer;an interior glass layer having at least one cutout in the camera area;at least two plastic bonding layers disposed between glass layers, a first plastic bonding layer adjacent to the exterior glass layer and a second plastic bonding layer adjacent to the interior glass layer; andan insert bonded to the exterior glass layer in the camera area by means of the first plastic bonding layer;wherein the second plastic bonding layer has at least a cutout in the camera area.2. The laminated glazing of claim 1 , wherein the insert is of a thickness that is less the thickness of the interior glass layer.3. The laminated glazing of claim 1 , wherein the insert at least partially overlaps the interior glass layer such that the at least one cutout of both interior glass layer and second plastic bonding layer are disposed completely within the area in which the insert is disposed.4. The laminated glazing of claim 1 , wherein said at least two plastic bonding layers are selected from the group consisting of polyvinyl butyl (PVB) claim 1 , ethylene vinyl acetate (EVA) ...

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27-06-2019 дата публикации

VEHICULAR LUMINOUS LAMINATED GLAZED ROOF, VEHICLE INCORPORATING SAME AND MANUFACTURE

Номер: US20190193376A1
Автор: Bäuerle Pascal
Принадлежит:

A laminated glazed roof includes a first glazing, forming an exterior glazing, with first and second main faces; a lamination interlayer made of polymeric material of thickness e1 of at most 1.8 mm; a second glazing, forming an interior glazing, with third and fourth main faces, the second and third main faces being the internal faces of the laminated glazing; and a set of diodes that are housed in through apertures or blind holes of the lamination interlayer. 2. The vehicular luminous laminated glazed roof as claimed in claim 1 , wherein each inorganic light-emitting diode is an electronic component equipped with a peripheral package encapsulating an edge face of the electronic component.3. The vehicular luminous laminated glazed roof as claimed in claim 1 , wherein a flexible diode carrier is pressed against or adhesively bonded to the second main face or the third main face claim 1 , the inorganic light-emitting diodes being reverse-mount diodes claim 1 , said diode carrier being of thickness e′2 that is at most 0.15 mm claim 1 , and wherein the diode carrier extends beyond the edge face of the laminated glazing claim 1 , and a narrower electrical supply portion extending beyond the edge face of the laminated glazing claim 1 , or wherein the inorganic light-emitting diode associated with the through aperture or the blind hole is on the second main face or are reverse mounted on the third main face or inorganic light-emitting diodes of said set of diodes are on the second main face or are reverse mounted on the third main face.4. The vehicular luminous laminated glazed roof as claimed in claim 3 , the diode carrier includes a diode-bearing first portion that is apertured.5. The vehicular luminous laminated glazed roof according as claimed in claim 3 , comprising a sheet made of thermoplastic material between a back face of the diode carrier and the second main face or the third main face claim 3 , the inorganic light-emitting diodes being reverse-mount diodes.6. ...

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29-07-2021 дата публикации

COMPOSITE PANE WITH ELECTRICALLY SWITCHABLE FUNCTIONAL ELEMENT IN THERMOPLASTIC INTERMEDIATE LAYER

Номер: US20210229531A1
Принадлежит:

A composite pane with an electrically switchable functional element, includes first and second panes, a thermoplastic intermediate layer joining the first pane to the second pane and including a first laminating film with a thickness of at least 0.3 mm and a second laminating film with a thickness of at most 70 μm. The first laminating film is inserted substantially areally between the first and second panes. The second laminating film is inserted exclusively in the region of the at least one functional element and protrudes with an overhang x of at least 1 mm and at most 10 mm beyond the outer edges of the functional element. The direct layer sequence in the region of an electrically switchable functional element consists of the first pane, the second laminating film, the electrically switchable functional element, optionally, a further second laminating film, the first laminating film, and the second pane. 2. The composite pane according to claim 1 , wherein a direct layer sequence in a region of the field of vision of the composite pane claim 1 , which lies outside the at least one electrically switchable functional element or the functional elements and outside the overhang x claim 1 , consists of the first pane claim 1 , the first laminating film claim 1 , and the second pane.3. The composite pane according to claim 1 , wherein the thermoplastic intermediate layer consists of the first laminating film and in each case one second laminating film per electrically switchable functional element that is inserted into the intermediate layer claim 1 , and the direct layer sequence in the region of the electrically switchable functional elements consists of the first pane claim 1 , the second laminating film claim 1 , the electrically switchable functional element claim 1 , the first laminating film claim 1 , and the second pane.4. The composite pane according to claim 1 , wherein the thermoplastic intermediate layer consists of the first laminating film and in each ...

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19-07-2018 дата публикации

STRENGTHENED ASYMMETRIC GLASS LAMINATES

Номер: US20180200995A1
Принадлежит:

Embodiments of a laminate including a first glass ply having first and second opposing surfaces defining a first edge having a first thickness, a second glass ply having third and fourth opposing surfaces defining a second edge having a second thickness that is less than the first thickness, and a polymer layer disposed between the second surface of the first glass ply and the third surface of the second glass ply are disclosed. In one or more embodiments, the first edge comprises any one of a roughness Ra of less than about 1300 nm and a root mean square (RMS) roughness of less than about 1700 nm, as measured along an area of about 0.5 square millimeters (mm2). In some embodiments, the first edge is substantially free of conchoidal fractures having a major dimension greater than 20 micrometers, as measured along an area of 0.60 square micrometers. Vehicles including such laminates and methods for forming such laminates are also disclosed. 1. A laminate comprising:a first glass ply having first and second opposing surfaces defining a first edge having a first thickness;a second glass ply having third and fourth opposing surfaces defining a second edge having a second thickness that is less than the first thickness; anda polymer layer disposed between the second surface of the first glass ply and the third surface of the second glass ply,{'sup': '2', 'wherein the first edge comprises a roughness Ra of less than about 1300 nm, as measured along an area of about 0.5 square millimeters (mm).'}2. The laminate of claim 1 , wherein the first edge comprises a root mean square (RMS) roughness of less than about 1700 nm claim 1 , as measured along the area.3. The laminate of claim 1 , wherein the second thickness is in the range from about 0.1 mm up to about 1.6 mm.4. The laminate of claim 1 , wherein the first thickness is in the range from about 1.6 mm to about 2.5 mm.5. The laminate of claim 1 , wherein the polymer layer comprises a third edge with a third thickness and a ...

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18-06-2020 дата публикации

LAMINATED GLAZING WITH EMBEDDED DATA TRANSPONDER

Номер: US20200193259A1
Принадлежит:

A laminated glazing includes a first substrate having an outer face and an inner face, one or more interlayers disposed on the inner face of the first substrate, a second substrate disposed on the interlayer and at least one data transponder device. The date transponder device includes an antenna and an integrated circuit that is provided between the first substrate and the second substrate Optionally, one or more heating elements is/are provided between the first substrate and the second substrate and spaced around the data transponder device at a pre-defined distance for rapidly heating the antenna the data transponder. 1. A laminated glazing comprising:a first substrate including an outer face and an inner face;one or more interlayers disposed on the inner face of the first substrate;a second substrate disposed on the one or more interlayers; andat least one data transponder device comprising an antenna and an integrated circuit disposed on at least one of the one or more interlayers, said one or more interlayers being placed in between the first and second substrate,wherein the at least one data transponder device is configured to communicate data wirelessly with a detecting device or a mobile device and provide selective reading of the transponder device.2. A laminated glazing comprising:a first substrate including an outer face and an inner face;one or more interlayers disposed on the inner face of the first substrate;a second substrate disposed on the one or more interlayers including an outer face and an inner face;at least one data transponder device comprising an antenna and an integrated circuit disposed on at least one of the one or more interlayers; said one or more interlayers being placed in between the first and second substrate; andone or more heating elements provided between the first substrate and the second substrate, wherein the one or more heating elements is/are positioned around the data transponder device at a pre-defined distance therein ...

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27-07-2017 дата публикации

HEATING GLAZING UNIT

Номер: US20170210096A1
Принадлежит: AGC Glass Europe

A laminated automotive glazing unit including two glass sheets joined by a thermoplastic interlayer sheet, a system of conductive layers applied to one of the sheets, and including on an edge of the same sheet a substantially opaque masking strip, making contact with the glass sheet, the system of conductive layers covering at least partially the masking strip. The glazing unit further includes busbars for supplying electrical power, the busbars making contact with the layer system in the portion covering the masking strip. The masking strip includes a set of layers that absorb visible radiation, the layers being formed by cathodic sputtering. 120-. (canceled)21. A laminated motor vehicle glass panel comprising:two glass sheets united by a thermoplastic interlayer sheet;a system of conductive layers applied to one of the sheets and comprising on an edge of the one sheet, a substantially opaque masking strip, in contact with the one sheet, the system of conductive layers covering, at least in part, the masking strip; andelectrical supply busbars in contact with the system of layers in the part covering the masking strip, wherein the masking strip is formed of an assembly of layers that absorb visible radiation, the layers being formed by cathode sputtering.22. The glass panel according to claim 21 , wherein the masking strip is applied to a 4 mm thick clear glass sheet such that visible light transmission through the strip is at most 1%.23. The glass panel according to claim 21 , wherein the masking strip has an assembly of layers claim 21 , total thickness of which is not greater than 4000 Å.24. The glass panel according to claim 21 , wherein the masking strip comprises at least one absorbent/reflective metal layer or layer based on a metal compound comprising a metal or metal alloy of metals from the group: W claim 21 , Cr claim 21 , Ta claim 21 , Al claim 21 , Cu claim 21 , Nb claim 21 , Zr claim 21 , Ti claim 21 , Nb claim 21 , Mo claim 21 , V claim 21 , Hf and ...

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26-07-2018 дата публикации

MOTOR VEHICLE GLAZING

Номер: US20180207909A1
Автор: VIVIER Jonathan
Принадлежит: AGC Glass Europe

The invention relates to a motor vehicle glazing, comprising: (i) two sheets of glass, external and internal, each respectively comprising an external face and and an internal face and , joined by means of one or more thermoplastic separator sheets, (ii) at least one electrically powered functional assembly being inserted between the glazing sheets, (iii) a capacitive sensor controlling the power supply of the functional assembly by means of a processing unit for signals transmitted by the sensor, the sensor also being arranged on a transparent support coated with an equally transparent conductive layer, a layer in which the sensor consists of a first area which corresponds to the capacitive electrode and a second area corresponding to the shielding electrode surrounding the first area, the first and second areas being separated by a distance A, and (iv) a capacitive switch placed at a distance B from the capacitive electrode. According to the invention, the distance A between the capacitive electrode and the shielding electrode is equivalent to the distance B between the capacitive switch and the capacitive electrode. 1. A motor vehicle glazing comprising:{'b': 1', '3', '2', '4, 'an external glass sheet and an internal glass internal glass sheet, each respectively comprising an external face and and an internal face and , joined by means of one or more thermoplastic interlayer sheets,'}at least one electrically supplied functional assembly being inserted between the sheets of the glazing,a capacitive sensor for controlling the supplying of the functional assembly via a unit for processing signals emitted by the sensor, the sensor also being positioned on a transparent support coated with a conductive layer which is also transparent, in which layer the sensor is formed of a first region which corresponds to a capacitive electrode and a second region corresponding to a shielding electrode surrounding the first region, the first and the second regions separated by a ...

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05-08-2021 дата публикации

LAMINATED VEHICLE PANE WITH OPAQUE POLYMERIC FILM

Номер: US20210237403A1
Принадлежит:

A laminated vehicle includes an outer pane and an inner pane that are joined to one another via at least one thermoplastic intermediate layer and an opaque polymeric film that is arranged between the outer pane and the inner pane, wherein the opaque polymeric film has at least one cutout. 1. A laminated vehicle pane comprising:an outer pane and an inner pane that are joined to one another via at least one thermoplastic intermediate layer, andan opaque polymeric film that is arranged between the outer pane and the inner pane,wherein the opaque polymeric film has at least one cutout.2. The laminated vehicle pane according to claim 1 , wherein the at least one cutout is a sensor window for an optical sensor.3. The laminated vehicle pane according to claim 1 , wherein the opaque polymeric film is made of polyethylene terephthalate (PET) or polyethylene (PE).4. The laminated vehicle pane according to claim 1 , wherein the at least one thermoplastic intermediate layer contains at least polyvinyl butyral (PVB) claim 1 , ethylene vinyl acetate (EVA) claim 1 , polyurethane (PU) claim 1 , or mixtures or copolymers or derivatives thereof.5. The laminated vehicle pane according to claim 1 , wherein the outer pane and the inner pane are joined to one another via exactly one thermoplastic intermediate layer and the opaque polymeric film is arranged between the inner pane and the thermoplastic intermediate layer or between the outer pane and the thermoplastic intermediate layer.6. The laminated vehicle pane according to claim 1 , wherein the outer pane and the inner pane are joined to one another via at least two thermoplastic intermediate layers and the opaque polymeric film is arranged between two of the thermoplastic intermediate layers.7. The laminated vehicle pane according to claim 1 , wherein the opaque polymeric film is between 10 μm and 80 μm thick.8. The laminated vehicle pane according to claim 1 , wherein the opaque polymeric film is black.9. The laminated vehicle pane ...

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05-08-2021 дата публикации

WINDSHIELD

Номер: US20210237540A1
Принадлежит: NIPPON SHEET GLASS COMPANY, LIMITED

The present invention provides a windshield on which an information acquisition device configured to acquire information from an outside of a vehicle by emitting and/or receiving light can be arranged, the windshield including: an outer glass plate; an inner glass plate; an interlayer arranged between the outer glass plate and the inner glass plate; a first blocking layer layered on a surface on the vehicle exterior side of the inner glass plate; and a second blocking layer layered on a surface on the vehicle interior side of the outer glass plate. The first blocking layer has an opening through which the light passes, and the second blocking layer is layered at a position where it blocks a portion of the opening, and the second blocking layer and the opening form a path through which the light passes. 1. A windshield on which an information acquisition device configured to acquire information from an outside of a vehicle by emitting and/or receiving light can be arranged , the windshield comprising:an outer glass plate;an inner glass plate;an interlayer arranged between the outer glass plate and the inner glass plate;a first blocking layer layered on a surface on a vehicle interior side of the inner glass plate; anda second blocking layer layered on a surface on a vehicle interior side of the outer glass plate;wherein the first blocking layer has an opening through which the light passes, andthe second blocking layer is layered at a position where it blocks a portion of the opening, and the second blocking layer and the opening form a path through which the light passes.2. The windshield according to claim 1 ,wherein the second blocking layer is formed extending in an up-down direction, andthe second blocking layer blocks a portion of the opening such that the shortest distance A between an upper side of the inner glass plate and an upper edge of the opening and the shortest distance B between the upper side of the inner glass plate and a lower edge of the second ...

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09-07-2020 дата публикации

LAMINATED GLAZING COMPRISING A TRANSPARENT SUBSTRATE WITH A HEATING LAYER HAVING ABLATION LINES EACH CLOSING ON ITSELF

Номер: US20200215797A1
Автор: TONDU Thomas
Принадлежит:

A laminated glazing has a plurality of rigid transparent substrates that are bonded to one another pairwise via an intercalary adhesive layer, at least one of these transparent substrates being coated with an electrically conductive layer that is substantially uniform in nature and thickness, a zone of which has four edges opposing one another in pairs, first and second busbars being arranged along two opposite edges, ablation lines of the electrically conductive layer closing in on themselves while forming non-conductive strips, each occupying a major portion of the distance between the busbars, the shape of the non-conductive strips being capable of providing a temperature of heating by the electrically conductive layer that is virtually constant over the entire area of the zone. 1. A laminated glazing consisting of a plurality of rigid transparent substrates that are bonded to one another pairwise via an intercalary adhesive layer , at least one of the plurality of rigid transparent substrates being coated with an electrically conductive layer that is substantially uniform in nature and thickness , a zone of said least one rigid transparent substrate having four edges opposing one another in pairs , first and second busbars being arranged along two opposite edges , wherein ablation lines of the electrically conductive layer close in on themselves while forming non-conductive strips , each occupying a major portion of a distance between the first and second busbars , a shape of the non-conductive strips being capable of providing a temperature of heating by the electrically conductive layer that is virtually constant over the entire area of the zone.2. The laminated glazing as claimed in claim 1 , wherein the distance between the first and second busbars varies along the opposite edges claim 1 , and wherein a width of the conductive strips increases with the distance between the first and second busbars.3. The laminated glazing as claimed in claim 1 , wherein the ...

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09-07-2020 дата публикации

ELECTROSTATIC DISCHARGE NOISE SUPPRESSION BY THE EARLY DISCHARGE OF A STEPPED METAL ELEMENT

Номер: US20200216194A1
Принадлежит:

A laminated glazing includes a first and a second glass sheet that are bonded by a first interlayer adhesive layer, a peripheral zone of the laminated glazing being covered by a stepped metal element, a window press that is rigidly connected to the structure for mounting the laminated glazing making contact with the laminated glazing, so as to hold the laminated glazing secure to its mounting structure, an electrical conductor having a first end that is electrically linked to the stepped metal element and a second tapered end at a non-zero distance at most equal to 1 mm from the window press. 1. A laminated glazing comprising at least a first glass sheet forming an exterior face of the glazing , which first glass sheet is linked to a second glass sheet by a first interlayer adhesive layer , wherein an edge of the first glass sheet is set back with respect to that of the second glass sheet , a peripheral portion of a free surface of the first glass sheet , the edge of the first glass sheet , an edge of the first interlayer adhesive layer and a portion of the surface of the second glass sheet extending beyond the first glass sheet describing a continuous stepped contour which is covered by a stepped metal element , a window press that is rigidly connected to the structure for mounting the laminated glazing and the shape of which is substantially complementary to that of the continuous stepped contour making contact with the laminated glazing in a volume described by the continuous stepped contour , so as to hold the laminated glazing secure to its mounting structure ,wherein said continuous stepped contour is covered by the stepped metal element with the interposition of an external seal, wherein the stepped metal element is covered by an air- and watertight seal, and wherein an electrical conductor has a first end that is electrically linked to the stepped metal element and a second tapered end at a non-zero distance at most equal to 1 mm from the window press.2. The ...

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25-07-2019 дата публикации

LAMINATED GLAZING WITH RECESSED VERY THIN INTERIOR GLASS

Номер: US20190224948A1
Автор: FREBOURG Philippe
Принадлежит:

A laminated glazing includes two sheets of glass and a polymer interlayer positioned between them. The first sheet of glass is thicker than the second sheet of glass the thickness of which is less than 1.2 mm. The edge of the second sheet of glass is recessed with respect to the edge of the first sheet of glass over all or part of the periphery of the glazing, thereby making it possible to protect the more fragile second sheet of glass from mechanical knocks against the edge face of the glazing. 2. The glazing as claimed in claim 1 , wherein the thickness of the first sheet of glass is at least 0.2 mm greater than that of the second sheet of glass.3. The glazing as claimed in claim 1 , wherein the edge of the second sheet of glass is recessed with respect to the edge of the first sheet of glass over the entire periphery of the glazing or over at least 30% of the periphery of the glazing.4. The glazing as claimed in claim 1 , wherein a recessing distance between the edge of the second sheet of glass and the edge of the first sheet of glass is at least 1 mm.5. The glazing as claimed in claim 4 , which has a peripheral side for which the recessing distance is less than or equal to 10 mm for the entire part of the peripheral side for which the edge of the second sheet of glass is recessed with respect to the edge of the first sheet of glass.6. The glazing as claimed in claim 1 , wherein claim 1 , for the part of the periphery of the glazing claim 1 , the edge of the second sheet of glass is recessed with respect to the edge of the polymer layer.7. The glazing as claimed in claim 1 , wherein claim 1 , for said part of the periphery of the glazing claim 1 , the edge of the polymer layer extends at an angle from the edge of the first sheet of glass claim 1 , making an acute angle with an internal main surface of the first sheet of glass claim 1 , the edge of the second sheet of glass being recessed with respect to the edge of the polymer layer.8. The glazing as claimed in ...

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06-11-2014 дата публикации

Picture frame with glass mat, and/or method of making the same

Номер: US20140325883A1
Автор: C. Brett JOHNSON
Принадлежит: Guardian Industries Corp

Certain example embodiments of this invention relate to picture frames with glass mats that have patterns painted and/or screen printed thereon, and/or methods of making the same. The patterns may include large blocks of one or more solid colors, textures, images, logos, licensed images/designs, arbitrary designs, and/or the like, in different example instances. The painted glass matting materials of certain example embodiments have been found to provide unique, aesthetically appealing framing-related products that enhance the quality of the original art in desirable ways.

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16-07-2020 дата публикации

SUPPRESSION OF ELECTROSTATIC DISCHARGE NOISE BY MEANS OF CONDUCTION BETWEEN A TIERED METAL ELEMENT AND THE WIRING SYSTEM OF A GLAZING UNIT

Номер: US20200223189A1
Принадлежит:

A laminated glazing includes a first and a second glass sheet that are bonded by a first interlayer adhesive layer, a peripheral zone of the laminated glazing being covered by a stepped metal element, the laminated glazing including a heating network of wires and/or a heating electrically conductive layer that is provided with busbars, a plurality of probes and other optional electrical elements that are linked to an electrical power supply via the connector of the laminated glazing, an electrical conductor linking the stepped metal element to a busbar of the heating network of wires and/or of the heating electrically conductive layer; and/or to the cap of the connector of the laminated glazing, which is linked to the ground of the structure for mounting the laminated glazing; and/or to a contact of the connector. 1. A laminated glazing comprising at least a first glass sheet forming an exterior face of the glazing , which first glass sheet is linked to a second glass sheet by a first interlayer adhesive layer , wherein an edge of the first glass sheet is set back with respect to an edge of the second glass sheet , a peripheral portion of a free surface of the first glass sheet , the edge of the first glass sheet , an edge of the first interlayer adhesive layer and a portion of a surface of the second glass sheet extending beyond the first glass sheet describing a continuous stepped contour which is covered by a stepped metal element , the laminated glazing comprising a heating network of wires and/or a heating electrically conductive layer that is provided with busbars , a plurality of probes for measuring temperature and other optional electrical elements that are linked to an electrical power supply via the connector of the laminated glazing , wherein said continuous stepped contour is covered by the stepped metal element with the interposition of an external seal , wherein the stepped metal element is covered by an air- and watertight seal , wherein an ...

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16-07-2020 дата публикации

ELECTROSTATIC DISCHARGE NOISE SUPPRESSION BY CONDUCTION BETWEEN A STEPPED METAL ELEMENT AND THE PANE RETAINER

Номер: US20200223528A1
Принадлежит:

A laminated glazing includes a first and a second glass sheet that are bonded by a first interlayer adhesive layer, a peripheral zone of the laminated glazing being covered by a stepped metal element, a window press that is rigidly connected to the structure for mounting the laminated glazing making contact with the laminated glazing, so as to hold the laminated glazing secure to its mounting structure, an electrical conductor linking the stepped metal element and the structure for mounting the laminated glazing by way of the window press. 1. A laminated glazing comprising at least a first glass sheet forming an exterior face of the glazing , which first glass sheet is linked to a second glass sheet by a first interlayer adhesive layer , wherein an edge of the first glass sheet is set back with respect to an edge of the second glass sheet , a peripheral portion of a free surface of the first glass sheet , the edge of the first glass sheet , an edge of the first interlayer adhesive layer and a portion of a surface of the second glass sheet extending beyond the first glass sheet describing a continuous stepped contour which is covered by a stepped metal element , a window press that is rigidly connected to the structure for mounting the laminated glazing and a shape of which is substantially complementary to that of the continuous stepped contour making contact with the laminated glazing in a volume described by the continuous stepped contour , so as to hold the laminated glazing secure to its mounting structure ,wherein said continuous stepped contour is covered by the stepped metal element with the interposition of an external seal, wherein the stepped metal element is covered by an air- and watertight seal, and wherein an electrical conductor links the stepped metal element and the structure for mounting the laminated glazing by way of the window press.2. The laminated glazing as claimed in claim 1 , wherein an electrical resistance between the stepped metal ...

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23-07-2020 дата публикации

SAFETY GLASS STACK

Номер: US20200230920A1
Принадлежит: AM7VISION GMBH

Adaptive laminated panel element for a vehicle window to reduce the effect of glare of a light source comprising a first panel and a second panel, a liquid crystal layer, and at least one connecting layer for connecting the first panel and the second panel with a spacing with respect to one another, wherein the liquid crystal layer is arranged between the first panel and the second panel or is applied to a surface of one of the first panel or the second panel, and wherein transparency of the adaptive laminated panel element is varied by controlling the liquid crystal layer via electrodes, and wherein the connecting layer is a birefringence-free adhesive layer and the laminated panel element is configured as safety glass for use as a vehicle window. 1. Adaptive laminated panel element for a vehicle window to reduce the effect of glare of a light source comprising:a first panel and a second panel;a liquid crystal layer; andat least one connecting layer for connecting the first panel and the second panel with a spacing with respect to one another, wherein the liquid crystal layer at least one of is arranged between the first panel and the second panel, or is applied to a surface of one of the first panel or the second panel, and whereintransparency of the adaptive laminated panel element is varied by controlling the liquid crystal layer via electrodes, andwherein the connecting layer is a birefringence-free adhesive layer and the laminated panel element is configured as safety glass for use as a vehicle window.2. The adaptive laminated panel element according to claim 1 , wherein the laminated panel element comprises at least one anti-reflection coating so that the maximum transmission of the laminated panel element is greater than 70%.3. The adaptive laminated panel element according to claim 1 , wherein the liquid crystal layer is provided between the first panel and the second panel claim 1 , and birefringence-free adhesive layers are used as connecting layers ...

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01-09-2016 дата публикации

GLASS LAMINATE STRUCTURES HAVING IMPROVED EDGE STRENGTH

Номер: US20160250825A1
Принадлежит:

A laminate structure having a first glass layer, a second glass layer, and at least one polymer interlayer intermediate the first and second glass layers. The polymer interlayer can include a first region having a first modulus of elasticity and a second region having a second modulus of elasticity. The second modulus of elasticity can be greater than the first modulus of elasticity. In some embodiments, the first region can be a central region of the polymer interlayer and the second region can be a peripheral region of the polymer interlayer encompassing the first region. 1. A laminate structure comprising;a first glass layer:a second glass layer; andat least one polymer interlayer intermediate the first and second glass layers,wherein the polymer interlayer includes a first region having a first modulus of elasticity and a second region having, a second modulus of elasticity that is greater than the first modulus of elasticity, and wherein the first modulus of elasticity is about 15 MPa, between about 1 MPa to about 20 MPa or between 2 to about 15 MPa.2. (canceled)3. The laminate structure of wherein the first region is a central region of the polymer interlayer and the second region is a peripheral region of the polymer interlayer encompassing the first region.4. (canceled)5. The laminate structure of wherein the second modulus of elasticity is greater than about 25 MPa claim 1 , between 25 MPa and 90 MPa claim 1 , greater than about 30 MPa claim 1 , greater than about 50 MPa claim 1 , about 75 MPa claim 1 , greater than about 90 MPa claim 1 , greater than about 100 MPa claim 1 , greater than about 500 MPa claim 1 , greater than about 1 GPa claim 1 , greater than about 2 GPa claim 1 , between about 1 GPa and about 4 GPa claim 1 , greater than about 4 GPa claim 1 , or between about 100 MPa and about 4 GPa.6. The laminate structure of wherein the width of the second region is variable.7. The laminate structure of wherein the width of the second region is ...

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30-07-2020 дата публикации

COMPOSITE GLASS PANE HAVING CHAMFERED THROUGH-HOLE

Номер: US20200238663A1
Принадлежит:

A composite glass pane with at least one through-hole, includes a first pane, a second pane, and at least one polymer intermediate layer between the first and second pane, wherein the through-hole is formed by a hole in the first pane, a hole in the polymer intermediate layer, and a hole in the second pane, wherein the hole in the first pane is a chamfered hole having a chamfer in each case on both sides of the first pane, and the hole in the second pane is a chamfered hole having a chamfer in each case on both sides of the second pane. 1. A composite glass pane with at least one through-hole , comprising a first pane , a second pane , and at least one polymer intermediate layer between the first and second pane , wherein the through-hole is formed by a hole in the first pane , a hole in the polymer intermediate layer , and a hole in the second pane , wherein the hole in the first pane is a chamfered hole having a chamfer in each case on both sides of the first pane , and the hole in the second pane is a chamfered hole having a chamfer in each case on both sides of the second pane.2. The composite glass pane according to claim 1 , wherein the chamfers have an angle α in the range from 35° to 55°.3. The composite glass pane according to claim 1 , wherein the chamfers have a height h in the range from 0.1 to 1 mm.4. The composite glass pane according to claim 1 , wherein the first pane and the second pane are made of partially tempered glass.5. The composite glass pane according to claim 1 , wherein the edge compressive stress at the through-hole is greater than 10 MPa.6. The composite glass pane according to claim 1 , wherein the surface compressive stress of the first pane and the surface compressive stress of the second pane is greater than 20 MPa.7. The composite glass pane according to claim 1 , wherein the size of shell chipping claim 1 , if present claim 1 , at the edge of the chamfers is less than 1000 μm.8. The composite glass pane according to claim 1 , ...

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15-08-2019 дата публикации

SLIDING LAMINATED GLAZING UNIT WITH INTERIOR PROJECTION

Номер: US20190248216A1
Принадлежит:

An automotive glazing unit includes a glazing and a system for allowing the glazing to be moved translationally with respect to a door of the vehicle. The glazing is curved and laminated and includes an exterior and an interior glass sheet and a plastic sheet located between the exterior and interior glass sheets. Each sheet has a peripheral edge face. The interior glass sheet is a glass sheet that has undergone a chemical tempering operation and has a thickness included between 0.40 and 2.10 mm and the edge face of the interior glass sheet is located beyond the edge face of the plastic sheet and beyond the edge face of the exterior glass sheet over at least one portion of the length of the edge face of the interior glass sheet. 1. An automotive glazing unit of a vehicle , the automotive glazing unit comprising a glazing and a system configured to allow said glazing to be moved translationally with respect to a door of said vehicle , said glazing being curved and laminated and comprising at least an exterior glass sheet , an interior glass sheet and a plastic sheet located between said exterior glass sheet and said interior glass sheet , each sheet having a peripheral edge face , wherein said interior glass sheet is a glass sheet having undergone a chemical tempering operation and having a thickness comprised between 0.40 and 2.10 mm , and wherein the edge face of said interior glass sheet is located beyond the edge face of said plastic sheet and beyond the edge face of said exterior glass sheet over at least one portion of the length of the edge face of said interior glass sheet.2. The glazing unit as claimed in claim 1 , wherein the edge face of said interior glass sheet includes a protective layer on at least one portion of the length of that edge face of said interior glass sheet which is located beyond the edge face of said plastic sheet and beyond the edge face of said exterior glass sheet.3. The glazing unit as claimed in claim 1 , further comprising a ...

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21-10-2021 дата публикации

LAMINATED GLAZING

Номер: US20210323278A1
Принадлежит: Pilkington Group Limited

A laminated glazing comprising first and second sheets of glass joined by an interlayer structure is described. The second sheet of glass has a first edge surface in an upper region of the laminated glazing. The first edge surface of the second sheet of glass is configured to comprise at least one region between first and second edges of the second sheet of glass such that in the at least one region the shortest distance along a straight line on the first edge surface of the second sheet of glass connecting a first point on the first edge of the second sheet of glass to a second point on the second edge of the second sheet of glass is at least 1.7 times the thickness of the second sheet of glass. A method of making the laminated glazing is also described. 129-. (canceled)30. A laminated glazing comprising:a first sheet of glass joined to a second sheet of glass by an interlayer structure therebetween, the interlayer structure comprising at least one sheet of adhesive interlayer material;the first sheet of glass having a first major surface and a second opposing major surface;the second sheet of glass having a first major surface and a second opposing major surface;the laminated glazing being configured such that the second major surface of the first sheet of glass faces the first major surface of the second sheet of glass;the first sheet of glass having a first edge surface between the first and second major surfaces of the first sheet of glass;the second sheet of glass having a first edge surface between the first and second major surfaces of the second sheet of glass;the first edge surface of the second sheet of glass intersecting the first major surface of the second glass sheet to define a first edge of the second sheet of glass; andthe first edge surface of the second sheet of glass intersecting the second major surface of the second sheet of glass to define a second edge of the second sheet of glass;wherein the first edge surface of the second sheet of glass ...

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13-08-2020 дата публикации

COMPOSITE GLASS UNIT AND USE OF A COMPOSITE GLASS UNIT AS A FUNCTIONAL ELEMENT OF A BUILDING

Номер: US20200254730A1
Автор: Schlögl Fritz
Принадлежит: sedak GmbH & Co. KG

A composite glass unit includes first and second glass sheets and a third glass sheet disposed between the first and second sheets. A first bonding layer is disposed between the first and the third glass sheets; a second bonding layer is disposed between the second and the third glass sheets; and a connecting element is fitted into a cutout of the third glass sheet, with the connecting element connected via the first bonding layer to the first glass sheet and/or via the second bonding layer to the second glass sheet. The object of making available a composite glass unit in which no impairments occur in the region around the connecting elements is realized by a separating layer, which differs from the bonding layers and which is disposed between the end surface of the connecting element, the end surface facing the third glass sheet, and by the third glass sheet. 1. A composite glass unit comprising a first glass sheet , a second glass sheet , and a third glass sheet disposed between the first glass sheet and the second glass sheet , with the third glass sheet having at least one cutout for receiving a connecting element , a first bonding layer disposed between the first glass sheet and the third glass sheet for bonding the first glass sheet to the third glass sheet , and a second bonding layer disposed between the second glass sheet and the third glass sheet for bonding the second glass sheet to the third glass sheet , and a connecting element fitted into the at least one cutout of the third glass sheet , with a first surface of the connecting element facing the first glass sheet connected via the first bonding layer to the first glass sheet and/or a second surface of the connecting element facing the second glass sheet connected via the second bonding layer to the second glass sheet ,wherein between the end surface or each end surface of the connecting element, which end surface is facing in the direction of the third glass sheet, and the third glass sheet, there is ...

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13-08-2020 дата публикации

GLASS LAMINATE WITH INLAY OBSCURATION HAVING SUPERIOR STRENGTH AND OPTICAL QUALITY

Номер: US20200254731A1
Принадлежит:

The use of camera-based safety systems is growing at a rapid rate in modern automobiles. At the same time, windshields, where many of the cameras are mounted, are becoming larger and more complex in shape. As the industry moves towards vehicles with full autonomous capability, the number of cameras required and the resolution of the cameras are both increasing. However, the optical quality of the windshield is less than optimal. One of the problems is caused by the typical black enamel frit that is printed on the glass, prior to heating and bending, to hide or obscure the camera hardware. The abrupt thermal gradients during bending, caused by the heat absorbing black frit, result in a high level of distortion in the camera field of view. The object of this invention is to provide laminated automotive glazing having an obscuration area produced by creating an obscuration after heating and bending the glass by removing a portion of the plastic interlayer glass in or near the camera field of view (camera obscuration) or/and in the edges of the windshield (black band) and replacing it with an inlay made of a substantially opaque plastic or other suitable material in or near the camera field of view (camera obscuration) or/and in the edges of the windshield (black band) rather than printing and firing an enamel frit on the glass. This results in a laminate having superior optical quality, higher strength and a lower probability of breakage as compared to a laminate with a black enamel frit obscuration. 1. A laminate comprising:at least two glass layers each having two oppositely disposed major faces;at least one plastic bonding interlayer having two oppositely disposed major faces; cutting an opening in said at least one plastic bonding interlayer;', 'cutting an inlay shaped to fit said opening;', 'inserting the inlay into the opening; and', 'assembling plastic bonding interlayer with inlay to laminate;, 'at least one obscuration produced by'}said at least one ...

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27-09-2018 дата публикации

MODULAR WALL PANELS AND PLANAR STRUCTURES

Номер: US20180272659A1
Принадлежит:

A modular glass panel comprising a glass structure having at least one thin glass sheet having a thickness ranging from about 0.5 mm to about 2.0 mm, a backing frame positioned adjacent the glass structure and situated along the perimeter of the glass structure, and a polymer layer intermediate the glass structure and backing frame to adhere the glass structure together with the backing frame. The glass structure can further comprise the at least one thin glass sheet and a second glass sheet having a polymer interlayer therebetween. The backing frame generally has a geometric cross-section with a rounded interior edge adjacent the glass structure to prevent breakage of the structure upon loading or impact of an exterior surface of the structure. 1. A modular glass panel comprisinga glass structure having at least one glass sheet with a thickness ranging from about 0.5 mm to about 2.0 mm;a backing frame positioned adjacent the glass structure and situated along the perimeter of the glass structure; anda polymer layer intermediate the glass structure and backing frame to adhere the glass structure together with the backing frame.2. The modular glass panel of wherein the thickness of the at least one glass sheet ranges from about 0.5 mm to about 1.5 mm claim 1 , from about 0.5 mm to about 1.0 mm or from about 0.5 mm to about 0.7 mm.3. The modular glass panel of wherein the glass structure further comprises the at least one glass sheet and a second glass sheet having a polymer interlayer therebetween.4. The modular glass panel of wherein the at least one glass sheet is a chemically-strengthened glass sheet.5. The modular glass panel of wherein the second glass sheet is selected from the group consisting of a chemically-strengthened glass sheet claim 4 , a soda lime glass sheet claim 4 , and a monolithic tempered glass sheet.6. The modular glass panel of wherein the at least one glass sheet is adjacent the backing frame.7. The modular glass panel of wherein the polymer ...

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25-11-2021 дата публикации

GLAZING WITH OPTICALLY TRANSPARENT SENSOR AREA

Номер: US20210362476A1
Принадлежит: AGC Glass Europe

A pane substrate with an optically transparent area comprising at least one optical device on the surface of the pane integrated in the optically transparent area. At least one coated glass patch is provided locally between the pane and the optical device. 1. A pane substrate with an optically transparent area comprising an optical device on a surface of the pane integrated in the optically transparent area ,wherein at least one coated glass patch is provided locally between the pane and the optical device.2. The pane according to claim 1 , wherein the optical device is an optical sensor device.3. The pane according to claim 1 , wherein the pane comprises glass and/or polymers.4. The pane according to claim 1 , wherein the glass patch comprises glass.5. The pane according to claim 1 , wherein the optically transparent area has an optical transparency for visible light and/or infrared radiation of >60%.6. The pane according to claim 1 , wherein the glass patch is provided with at least one coating.7. The pane according to claim 1 , wherein the glass patch is bonded optically and mechanically to the substrate.8. The pane according to claim 1 , wherein the glass patch has a thickness of <1 mm.9. The pane according to claim 1 , wherein the coating is provided on the side of the glass patch facing the pane and/or on the side of the glass patch turned away from the pane.10. The pane according to claim 1 , wherein the pane is an automotive glazing and more particularly a windshield.11. The pane according to claim 2 , wherein the optical sensor is an infrared-based remote sensing device in the wavelength range from 750 nm to 1650 nm (LIDAR sensor).12. The pane according to claim 1 , wherein the pane substrate and the glass patch have an absorption coefficient lower than 5 min the wavelength range from 750 nm to 1650 nm13. The pane according to claim 4 , wherein the glass patch is provided on an inner face and the size of glass patch fits with the size of the field of view ...

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05-09-2019 дата публикации

SLIDING LAMINATED GLAZING UNIT WITH INTERIOR PROJECTION

Номер: US20190270282A1
Принадлежит:

An automotive glazing unit includes a glazing and a system for allowing the glazing to be moved translationally with respect to a door of the vehicle. The glazing is curved and laminated and includes an exterior and an interior glass sheet and a plastic sheet between the exterior and interior glass sheets, each sheet having a peripheral edge face. The edge face of the interior glass sheet is located beyond the edge face of the plastic sheet and beyond the edge face of the exterior glass sheet over a portion of the length of the edge face of the interior glass sheet. The edge face of the interior glass sheet includes a protective layer on a portion of the length of that edge face of the interior glass sheet which is located beyond the edge face of the plastic sheet and beyond the edge face of the exterior glass sheet. 1. An automotive glazing unit of a vehicle , the automotive glazing unit comprising a glazing and a system configured to allow said glazing to be moved translationally with respect to a door of said vehicle , said glazing being curved and laminated and comprising at least an exterior glass sheet , an interior glass sheet and a plastic sheet located between said exterior glass sheet and said interior glass sheet , each sheet having a peripheral edge face , wherein the edge face of said interior glass sheet is located beyond the edge face of said plastic sheet and beyond the edge face of said exterior glass sheet over at least one portion of a length of the edge face of said interior glass sheet and wherein the edge face of said interior glass sheet includes a protective layer on at least one portion of the length of that edge face of said interior glass sheet which is located beyond the edge face of said plastic sheet and beyond the edge face of said exterior glass sheet.2. The glazing unit as claimed in claim 1 , wherein said interior glass sheet is a glass sheet having a thickness comprised between 0.40 and 2.10 mm.3. The glazing unit as claimed in ...

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23-12-2021 дата публикации

LAMINATED GLASS PANE AND METHOD FOR THE PRODUCTION THEREOF

Номер: US20210394487A1
Принадлежит:

A laminated glass pane includes two glass or polycarbonate panes and at least one polymer film or a film laminate bonded therebetween and an electronic functional unit arranged therebetween, wherein, in part of the area of the laminated glass pane, a cutout of the polymer film or of the film laminate is provided and, accommodated in the cutout, is a fully prefabricated electronic functional module including multiple electronic functional units and/or other parts that are arranged within the functional module laterally alongside one another and/or at least partially vertically overlapping in an electrically and mechanically protective insulating shell, in particular an encapsulation composed of a polymeric casting compound that has a thickness that is at most equal to the thickness of the polymer film or of the film laminate. 1. A laminated glass pane comprising two glass or polycarbonate panes and at least one polymer film or a film laminate bonded therebetween and an electronic functional unit arranged therebetween , wherein , in part of an area of the laminated glass pane , a cutout of the polymer film or of the film laminate is provided and , accommodated in the cutout , is a fully prefabricated electronic functional module comprising multiple electronic functional units and/or other parts that are arranged within the functional module laterally alongside one another and/or at least partially vertically overlapping in an electrically and mechanically protective insulating shell.2. The laminated glass pane according to claim 1 , implemented as a front window or rear window or roof glazing of a vehicle claim 1 , wherein the cutout of the polymer film or of the film laminate and the prefabricated electronic functional module are arranged at or near an edge of the laminated glass pane.3. The laminated glass pane according to claim 1 , wherein a thickness of the polymer film or of the film laminate and of the electronic functional module is less than 1.2 mm.4. The ...

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13-10-2016 дата публикации

Laminated plate

Номер: US20160297169A1
Принадлежит: Asahi Glass Co Ltd

There is provided a laminated plate including a first plate being curved in a first curved shape, a second plate having a second shape, the second shape being different from the first curved shape, and an inter mediate film bonding the first plate and the second plate; wherein a first corner edge of the laminated plate does not include a fold.

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11-10-2018 дата публикации

LAMINATED PLATE

Номер: US20180290438A1
Принадлежит: Asahi Glass Company, Limited

A laminated plate includes first and second plates bonded to each other via an intermediate layer. The laminated plate includes a first main surface of the first plate opposite to the intermediate layer; a second main surface of the first plate and a third main surface being in contact with the intermediate layer; a fourth main surface of the second plate opposite to the intermediate layer. A thickness of the first plate is thicker than a thickness of the second plate. In a planar view, the laminated plate includes a peripheral region and an in-plane region. In a cross section orthogonal to an outer periphery of the laminated plate, a distance from an outermost periphery of the second plate to the first plate in a thickness direction with respect to the outermost periphery is three times or less a distance between the first and second plates in the in-plane region. 1. A laminated plate provided with a first plate and a second plate bonded to the first plate via an intermediate layer , comprising:a first main surface of the first plate opposite to the intermediate layer;a second main surface of the first plate being in contact with the intermediate layer;a third main surface of the second plate being in contact with the intermediate layer; anda fourth main surface of the second plate opposite to the intermediate layer,wherein a thickness of the first plate is thicker than a thickness of the second plate,wherein, in a planar view, the laminated plate includes a peripheral region and an in-plane region,wherein, in at least a part of an outer periphery of the laminated plate, in a cross section orthogonal to the outer periphery, a distance from an outermost periphery of the second plate to the first plate in a thickness direction with respect to the outermost periphery is three times or less a distance between the first plate and the second plate in the in-plane region.2. The laminated plate according to claim 1 ,wherein the outermost periphery of the second plate is on ...

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19-09-2019 дата публикации

Molded foam body, dam rubber, composite body of dam rubber and panel, and method for increasing sound transmission loss

Номер: US20190284362A1
Принадлежит: Kuraray Co Ltd

Provided are a foam molded body capable of improving damping properties and sound insulation properties of a panel and realizing weight reduction of a panel, a dam rubber, a complex of a dam rubber and a panel, and a method for increasing a sound transmission loss. The present invention is concerned with a foam molded body of a resin composition containing a block copolymer (I) which is a block copolymer having a polymer block (A) composed mainly of a structural unit derived from an aromatic vinyl compound and other polymer block (B), exhibits a peak top temperature of tan δ, as measured under a condition of a thickness of a test piece of 1 mm, a strain amount of 0.1%, a frequency of 1 Hz, a measurement temperature of −70 to 70° C., and a temperature rise rate of 3° C./min in conformity with JIS K7244-10 (2005), of −50 to 50° C., and has a peak top molecular weight determined in terms of standard polystyrene by gel permeation chromatography of 30,000 to 500,000; at least one olefin-based polymer (II) selected from the group consisting of an ethylene-propylene-diene copolymer rubber, an ethylene-vinyl acetate copolymer, and a polyethylene-based resin; a crosslinking agent (III); and a foaming agent (IV).

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10-09-2020 дата публикации

AUTOMOTIVE LAMINATE WITH SUPERIOR CAMERA WINDOW

Номер: US20200282922A1
Принадлежит: AGP AMERICA S.A.

The use of camera based safety systems is growing at a rapid rate in modern automobiles. As the industry moves for full autonomous capability, the number of cameras required is increasing. At the same time, windshields, where many of the cameras are mounted are 5 becoming larger and more complex in shape. This presents problems in the area of camera optics. For one, the camera is looking out through at least two layers of bent glass bonded together by a third layer of plastic. Mismatches in the refractive index can result in a double image. The curvature of the glass turns the window into a lens and, in conjunction with the often low installation angle, can reduce the optical clarity of the camera field of view. The 0 laminate of the invention has a cutout in the area of the camera(s) on the interior glass layer where the cameras are mounted. The cameras are mounted directly to the glass via a bracket or adhesive or to a thin transparent insert. The glass can also be fitted with a lens system optically bonded to the glass for even better performance. The result is a laminated glazing with superior optical quality. 1. A laminated glazing having a camera area comprising:an exterior glass layer;an interior glass layer having at least one cutout in the camera field of view;at least one plastic bonding layer, wherein the surface two of the exterior glass layer bonded to the surface three of the interior glass layer by one plastic bonding layer of said at least one plastic bonding layer positioned between opposite faces of the interior and the exterior glass layers;an insert that fits within said at least one cutout, said insert bonded to the surface two of said exterior glass layer; anda camera mounting bracket bonded to the insert.2. The laminated glazing of claim 1 , wherein the insert is of a thickness that is less the thickness of the interior glass layer.3. The laminated glazing of claim 1 , wherein the cutout is made after bending.4. The laminated glazing of claim ...

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17-09-2020 дата публикации

Glass laminate with thin insert obscuration having superior strength and optical quality

Номер: US20200290319A1
Принадлежит: AGP America SA

Black enamel frit obscurations are commonly printed on laminated and tempered automotive safety glazing where they serve to hide the adhesive used to bind the glazing to the automotive body and to protect the adhesive from ultraviolet radiation. However, frit has a number of drawbacks. Frit weakens the surface of the glass. It can create distortion in the glass due to thermal gradients. Printed frit obscurations are incompatible and cannot be used with many types of coatings. Standard frit blocks ion exchange and cannot be used with the chemical tempering process. In addition, while many types of frits are available for printing on soda-lime glass, there are very few, if any, for non-soda lime glass. As the market moves towards thinner and lighter glazing, non-soda lime glass types are finding increasing application in automotive glazing. These limitations are overcome by replacing the printed black obscuration with an obscuration formed from a thin sheet of plastic, which is integrated into the laminate. This results in a laminate having superior optical quality, higher strength and a lower probability of breakage as compared to a laminate with a black enamel frit obscuration.

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03-10-2019 дата публикации

VEHICULAR LUMINOUS LAMINATED GLAZED ROOF, VEHICLE INCORPORATING SAME AND MANUFACTURE

Номер: US20190299566A1
Принадлежит:

A luminous laminated glazed roof of a vehicle includes a first glazing, forming an exterior glazing, with first and second main faces; a lamination interlayer made of polymeric material of thickness e1 of at most 1.8 mm; a second glazing, forming an interior glazing, with third and fourth main faces, the second and third main faces being the internal faces of the laminated glazing; a lamination interlayer with through or blind apertures housing diodes; and collimating optics between the diodes and the third main face. 1. A luminous laminated glazed roof for a vehicle , said roof comprising a laminated glazing including:a first transparent glazing, made of optionally tinted mineral glass, with first and second main faces; which first transparent glazing is intended to be an exterior glazing;a second transparent glazing made of mineral glass, with third and fourth main faces, which second transparent glazing is intended to be an interior glazing;between the second and third main faces, which are internal faces of the laminated glazing, an optionally tinted transparent lamination interlayer film made of polymeric material, said lamination interlayer film having a fifth main face oriented toward the second main face and a sixth main face oriented toward the third main face, the fifth main face optionally making adhesive contact with the second main face and the sixth main face optionally making adhesive contact with the second main face; anda set of inorganic light-emitting diodes, each inorganic light-emitting diode including at least one semiconductor chip, each inorganic light-emitting diode being able to emit in a direction of the third main face;wherein said lamination interlayer is provided, between the fifth main face and the sixth main face, with one or more apertures that are through apertures or that form blind holes;wherein each inorganic light-emitting diode is associated with a through aperture or a blind hole housing the inorganic light-emitting diode;or ...

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03-10-2019 дата публикации

Vehicular luminous laminated glazed roof, vehicle incorporating same and manufacture

Номер: US20190299852A1
Принадлежит: Saint Gobain Glass France SAS

An illuminated laminated sunroof for a vehicle includes a first glazing, forming the exterior glazing, with first and second main faces; a lamination interlayer made of a polymer material with a thickness e 1 of at most 1.8 mm; a second glazing forming the interior glazing, with third and fourth main faces, the second and third main faces being the internal faces of the laminated glazing, the lamination interlayer with blind or through-openings housing diodes, and collimation optics between the diodes and the third main face.

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02-11-2017 дата публикации

MANUFACTURE OF LAMINATED GLAZING

Номер: US20170314321A1
Принадлежит:

A laminated includes two bent glass substrates, a polymer interlayer between the glass substrates, and a notch or orifice cut in an entire thickness of the glazing. The glazing includes a border of compressive edge stresses obtained by general controlled cooling of the substrates in a paired state so that compressive stresses are generated at the border, and a local compression zone, different from the border, and obtained by local controlled cooling of a local area of a main surface of the glazing so that compressive stresses are generated in theid local compression zone. The notch or orifice is located in the local compression zone and made in the substrates in a paired state after forming the local compression zone so that cut contours of the substrates in the notch or orifice have a perfect superposition. The compressive edge stresses of the cut contours are greater than 4 MPa. 122.-. (canceled)23. A bent laminated glazing comprising at least two glass substrates , the bent laminated glazing comprising a border of compressive edge stresses and locally comprising in each of the at least two glass substrates and in a superposed manner in all of the at least two glass substrates a local zone of compressive stresses free of orifices and different from said border , enabling a cutting of said bent laminated glazing along a line within said local zone in order to form , after cutting , an edge having compressive edge stresses greater than 4 MPa.24. The bent laminated glazing as claimed in claim 23 , wherein the border of compressive edge stresses is obtained by general controlled cooling of the at least two glass substrates in a paired state and the local zone of compressive stresses is obtained by local controlled cooling of the at least two glass substrates in the paired state.25. The bent laminated glazing as claimed in claim 23 , wherein the edge formed along the line has compressive edge stresses greater than 8 MPa.26. The bent laminated glazing as claimed in ...

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03-12-2015 дата публикации

LAMINTED GLASS ASSEMBLY

Номер: US20150343744A1
Принадлежит:

Cracking of a laminated glass assembly having a device encapsulated therein during the manufacturing process is prevented. The laminated glass assembly includes a first and a second glass sheet; a first, a second and a third intermediate film interposed between the first and second glass sheets, in that order; an organic EL panel interposed between the first and second intermediate films and provided with a terminal member; and a first wiring member consisting of a metallic thin strip connected to the terminal member in a thickness-wise direction via a first solder; wherein at least one of the two glass sheets has a thickness of 1.0 mm to 1.6 mm; and at a connecting portion of the terminal member, the first solder and the first wiring member, the first wiring member has a thickness of 0.05 mm to 0.10 mm and a width of 3 mm to 15 mm, and the first solder has a thickness of 0.01 mm to 0.20 mm; and a total thickness of the terminal member, the first solder and the first wiring member is 0.16 mm to 0.40 mm. 114-. (canceled)15. A laminated glass assembly , comprising:a pair of glass sheets;an intermediate film interposed between the two glass sheets;an electric heat wire extending along the intermediate film to emit heat when an electric current is supplied thereto; anda first electroconductive member layered and connected to the electric heat wire in a thickness-wise direction of the glass sheets between the two glass sheets to supply electric power to the electric heat wire;wherein the two glass sheets are each made of soda-lime glass, and at least one of the two glass sheets has a thickness of 1.0 mm to 1.6 mm;the intermediate film has a thickness of 0.3 mm to 2.0 mm; anda connecting portion between the electric heat wire and the first electroconductive member has a thickness of 0.16 mm to 0.40 mm.16. The laminated glass assembly according to claim 15 , wherein one of the glass sheets and the intermediate film are provided with a cutout on an edge portion thereof ...

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01-12-2016 дата публикации

LAMINATED GLAZING

Номер: US20160347036A1
Принадлежит: Pilkington Group Limited

The invention relates to a laminated glazing comprising first and second plies of glazing material, a carrier film arranged between the first and second plies of glazing material carrying an electrically conductive coating, a busbar arranged in contact with the electrically conductive coating. An edge of the carrier film is spaced inwardly from an edge of the glazing. The busbar and the carrier film are arranged to define an anchor portion suitable for anchoring the carrier film, the anchor portion comprising a region of the carrier film extending outwardly from an edge of the busbar. The anchor portion anchors the film to avoid the formation of wrinkles in the carrier film. Avoidance of wrinkles results in more uniform heating and elimination of hotspots. 1. A laminated glazing comprising:first and second plies of glazing material;a carrier film arranged between the first and second plies of glazing material, carrying an electrically conductive coating;a busbar arranged in electrical contact with the electrically conductive coating;wherein an edge of the carrier film is spaced inwardly from an edge of the first ply of glazing material; andthe busbar and the carrier film are arranged to define an anchor portion suitable for anchoring the carrier film, said anchor portion comprising a region of the carrier film extending outwardly from an edge of the busbar.2. A laminated glazing according to claim 1 , further comprising first and second plies of bonding resin claim 1 , arranged between the first and second plies of glazing material claim 1 , wherein the carrier film is arranged between the first and second plies of bonding resin.3. A laminated glazing according to claim 1 , wherein the anchor portion has a substantially triangular shape.4. A laminated glazing according to claim 1 , further comprising a collinear region wherein the edge of the busbar and the edge of the carrier film are collinear.538. A laminated glazing according to claim 4 , further comprising a ...

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22-10-2020 дата публикации

ELECTRICAL CONNECTION CONFIGURATIONS FOR PRIVACY GLAZING STRUCTURES

Номер: US20200333656A1
Принадлежит:

A privacy glazing structure may include an electrically controllable optically active material that provides controlled transition between a privacy or scattering state and a visible or transmittance state. To make electrical connections with electrode layers that control the optically active material, the privacy glazing structure may include electrode engagement regions. In some examples, the electrode engagement regions are formed as notches in peripheral edges of opposed panes bounding the optically active material. The notches may or may not overlap to provide a through conduit in the region of overlap for wiring. In either case, the notches may allow the remainder of the structure to have a flush edge surface for ease of downstream processing. 1. A privacy glazing structure comprising:a first pane of transparent material having an inner face and a peripheral edge;a second pane of transparent material having an inner face and a peripheral edge;a first electrode layer carried by the inner face of the first pane of transparent material, the first electrode layer including a first contact portion extending between the peripheral edge of the first pane of transparent material and a remainder of the first electrode layer but otherwise being offset from the peripheral edge of the first pane of transparent material about a perimeter of the first pane of transparent material;a second electrode layer carried by the inner face of the second pane of transparent material, the second electrode layer including a second contact portion extending between the peripheral edge of the second pane of transparent material and a remainder of the second electrode layer but otherwise being offset from the peripheral edge of the second pane of transparent material about a perimeter of the second pane of transparent material;a sealant extending around the perimeter of the first pane of transparent material and the second pane of transparent material and bonding the first pane of ...

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07-11-2019 дата публикации

Laminated Glass Retention System

Номер: US20190338580A1
Принадлежит:

A laminated glass retention system for securing a laminated glass subassembly within a window sash or frame member or door panel or similar component includes a retention member applied to the laminated glass subassembly. The retention member generally can include a leg portion that engages of the laminated glass subassembly, and can further include a base portion that is coupled to the frame member in which the laminated glass subassembly is seated. The retention member helps retain the insulating glass subassembly within its frame member when subjected to high winds and wind-borne debris. 1. A window or door assembly comprising:a glass subassembly with edges surrounded and supported by a frame;the frame and the glass subassembly each having an inside surface that faces the inside of a structure when the window or door assembly is installed and an outside surface that faces the outside of the structure when the window or door is installed;the frame having a generally L-shaped interior channel defined by a peripheral wall extending from the inside surface of the frame to a corner edge and an inside facing attachment surface extending from the corner edge of the peripheral wall to a free edge;the edges of the glass subassembly being seated within the generally L-shaped interior channel with a space defined between the edges of the glass subassembly and the peripheral wall of the channel;a retention member having a first portion that extends along the edges of the glass subassembly and engages the inside surface of the glass subassembly and a second portion that extends along and engages the frame adjacent the L-shaped channel;a leg extending from the retention member into the space between the edges of the glass subassembly and the peripheral wall of the channel; anda bonding material disposed at least in the space between the edges of the glass subassembly and the peripheral wall of the channel with the bonding material at least partially encapsulating the leg;the ...

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29-10-2020 дата публикации

METHOD FOR PRODUCING A LAMINATED PANE

Номер: US20200338864A1
Принадлежит:

A method for producing a laminated pane, wherein a first laminating film, a carrier film, and a second laminating film are provided and joined to form a pre-laminate, wherein the first laminating film, the carrier film, and the second laminating film have the same film thickness, a compensating film and the pre-laminate are arranged to form a layer stack between a first pane and a second pane, wherein, parallel to two side edges of the layer stack, in each case a strip-shaped peripheral film is arranged and the compensating film is provided to compensate an offset between the pre-laminate and the peripheral films, and the layer stack including the first pane, the pre-laminate, the compensating film with peripheral films, and the second pane is laminated to form a laminated pane, wherein the first laminating film and the second laminating film have a plasticizer content of less than 15 wt.-%. 1. A method for producing a laminated pane , the method comprising:providing and joining a first laminating film, a carrier film, and a second laminating film to form a pre-laminate, wherein the first laminating film, the carrier film, and the second laminating film have the same film thickness, the first pane,', 'the pre-laminate,', 'the compensating film with peripheral films and', 'the second pane, 'arranging a compensating film and the pre-laminate to form a layer stack between a first pane and a second pane, wherein, parallel to two side edges of the layer stack, in each case a strip-shaped peripheral film is arranged and the compensating film is provided to compensate an offset between the pre-laminate and the peripheral films, and laminating the layer stack comprising'}to form a laminated pane, wherein the first laminating film and the second laminating film have a plasticizer content of less than 15 wt.-%.2. The method according to claim 1 , wherein the peripheral film is arranged parallel to a longitudinal edge extending in the longitudinal direction of the pre-laminate ...

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15-12-2016 дата публикации

LAMINATED SUBSTRATE FOR WINDOW, LAMINATED SUBSTRATE FOR WINDOW WITH FRAME BODY, AUTOMOBILE WITH LAMINATED SUBSTRATE FOR WINDOW, AND INTERMEDIATE LAYER STRUCTURE FOR LAMINATED SUBSTRATE FOR WINDOW

Номер: US20160361898A1
Принадлежит: Asahi Glass Company, Limited

Disclosed is a laminated substrate for a window, in which substrates are laminated through an intermediate layer structure, the laminated substrate includes a peripheral edge region, and a central region, wherein the intermediate layer structure includes a first region, and a second region, wherein, when a value obtained by dividing shear modulus of the second region against static force by shear modulus of the first region against the static force is denoted by x, a ratio of an area of the second region with respect to an area of the whole laminated substrate for the window is greater than or equal to (−74.87+204.47)%, for 1.40≦x≦2.72; and greater than or equal to (−0.0067+0.87)%, for x>2.72; and wherein a ratio of an area of the second region in the central region is less than or equal to 83%. 1. A laminated substrate for a window , a plurality of illustrates being laminated through an intermediate layer structure in the laminated substrate , the laminated substrate for the window comprising , in a plan view:a peripheral edge region along a periphery of the laminated substrate for the window; anda central region positioned inside the peripheral edge region,wherein the intermediate layer structure includes, in the plan view, a first region, and a second region,wherein shear modulus of the second region against static force is greater than or equal to 1.40 times that of the first region,wherein, when a value obtained by dividing the shear modulus of the second region against the static force by shear modulus of the first region against the static force is denoted by x, in the second region, a ratio of an area of the second region with respect to an area of the whole laminated substrate for the window in the plan view is greater than or equal to (−74.87x+204.47)%, for 1.40≦x≦2.72; and greater than or equal to (−0.0067x+0.87)%, for x>2.72; andwherein a ratio of an area of the second region included in the central region in the plan view is greater than or equal to 0% ...

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29-10-2020 дата публикации

LAMINATED GLASS RETENTION SYSTEM

Номер: US20200340290A1
Принадлежит:

A laminated glass retention system for securing a laminated glass subassembly within a window sash or frame member or door panel or similar component includes a retention member applied to the laminated glass subassembly. The retention member generally can include a leg portion that engages of the laminated glass subassembly, and can further include a base portion that is coupled to the frame member in which the laminated glass subassembly is seated. The retention member helps retain the insulating glass subassembly within its frame member when subjected to high winds and wind-borne debris. 1. A window or door assembly comprising:a glass subassembly with edges surrounded and supported by a frame;the frame and the glass subassembly each having an inside surface that faces the inside of a structure when the window or door assembly is installed and an outside surface that faces the outside of the structure when the window or door is installed;the frame having a generally L-shaped interior channel defined by a peripheral wall extending from the inside surface of the frame to a corner edge and an inside facing attachment surface extending from the corner edge of the peripheral wall to a free edge;the edges of the glass subassembly being seated within the generally L-shaped interior channel with a space defined between the edges of the glass subassembly and the peripheral wall of the channel;a retention member having a first portion that extends along the edges of the glass subassembly and engages the inside surface of the glass subassembly and a second portion that extends along and engages the frame adjacent the L-shaped channel;a leg extending from the retention member into the space between the edges of the glass subassembly and the peripheral wall of the channel, the leg extending to a distal edge spaced from the inside facing attachment surface of the L-shaped interior channel and being spaced from the edges of the glass subassembly and from the peripheral wall of ...

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