Patent classifications
B29L2031/778
PHASE GRADIENT NANOCOMPOSITE WINDOW FABRICATION AND METHOD OF FABRICATING DURABLE OPTICAL WINDOWS
A unitary radome layer assembly is provided and includes a first nanocomposite formulation and a second nanocomposite formulation. The first and second nanocomposite formulations are provided together in a unitary radome layer with respective distribution gradients.
PHASE GRADIENT NANOCOMPOSITE WINDOW FABRICATION AND METHOD OF FABRICATING DURABLE OPTICAL WINDOWS
An optical window is provided and includes a core layer, a cladding layer and an electromagnetic interference (EMI) layer interposed between the core and cladding layers.
Method and mould for producing a panel assembly
Mold for producing a panel assembly comprising a panel and a gasket, which gasket is adhered to the panel, and extends along at least a portion of the periphery thereof, the mold comprising a first mold part and a second mold part that are formed such that the panel can been closed thereby forming a closed cavity the inner boundaries of which are formed by a first mold surface, a second mold surface and the periphery of the panel, and wherein the second mold part comprises a resilient lip extending along the periphery, the resilient lip being provided for being displaced by an applicator device to provide access to the closed cavity.
Method for manufacturing vehicle window component and vehicle window component
A method for manufacturing a vehicle window component and a vehicle window component, wherein the method for manufacturing the vehicle window comprises: providing a vehicle window substrate and an elastic body; adhering the elastic body to a surface of the vehicle window substrate, wherein the surface is close to a lateral side of the vehicle window substrate; and implementing an injection molding process for forming an encapsulation, wherein the injection molding process is performed at an injection molding temperature lower than a melting temperature of the elastic body. The method for manufacturing a vehicle window component and the vehicle window component provided by the present disclosure may have no shrink mark.
Glass encapsulation structure and injection molding device
A glass encapsulation structure and an injection molding device are provided. The encapsulation structure includes: a guide piece; and an encapsulation component, wherein the guide piece is fixed to a side surface of a glass through the encapsulation component, wherein the guide piece includes a strip part, a bump and a positioning hole, wherein the strip part has a first surface, and a second surface opposite to the first surface and facing an interior of a vehicle body when the guide piece is mounted onto the vehicle body, the bump is located on and perpendicular to the first surface, the positioning hole is formed in the bump, an axis of the positioning hole is perpendicular to the side surface of the glass, and the positioning hole matches a positioning pin in an injection molding device in an injection molding process. A yield of encapsulation structures may be improved.
METHODS, SYSTEM AND APPARATUSES FOR IN SITU REMOVAL OF WINDOW DISTORTION
Methods systems and apparatuses for reducing or substantially eliminating distortion in a transparent substrate in situ are disclosed.
DAYLIGHTING SHEET, DAYLIGHTING PANEL AND ROLL-UP DAYLIGHTING SCREEN
An object is to provide a daylighting sheet which efficiently performs daylighting and in which, when the daylighting sheet is applied to a window of a building or the like, it is possible to see an outdoor side.
The daylighting sheet includes a translucent base material layer; and a light deflection layer that is formed on the base material layer, and the light deflection layer includes: light transmission portions that are aligned along one surface of the base material layer so as to be able to transmit light, each of the light transmission portions including a portion that is convex upwards; and light deflection portions that are formed between the light transmission portions and filled with a material whose refractive index is lower than that of the light transmission port ions.
Methods of Joining
Methods of joining members, forming molded portions with members, securing inserts with members, and joined members, such as for a frame or a frame for a fenestration unit, formed thereby, are disclosed. One embodiment of the method includes placing a first member with a first cavity in a joining position, placing a second member proximate the first cavity of the first member in the joining position, injecting a resin into the first cavity, allowing the resin to solidify at least partially to join the first member and second member to form a joined member, and removing the joined member from the joining position. Optionally, the joined member can be formed in a fixture, can include molded portions formed by the resin, and/or can include inserts held in place by the resin. Further, members without cavities can form a cavity that can receive the resin.
Daylighting sheet, daylighting panel and roll-up daylighting screen
An object is to provide a daylighting sheet which efficiently performs daylighting and in which, when the daylighting sheet is applied to a window of a building or the like, it is possible to see an outdoor side. The daylighting sheet includes a translucent base material layer; and a light deflection layer that is formed on the base material layer, and the light deflection layer includes: light transmission portions that are aligned along one surface of the base material layer so as to be able to transmit light, each of the light transmission portions including a portion that is convex upwards; and light deflection portions that are formed between the light transmission portions and filled with a material whose refractive index is lower than that of the light transmission portions.
GLASS ENCAPSULATION STRUCTURE AND INJECTION MOLDING DEVICE
A glass encapsulation structure and an injection molding device are provided. The encapsulation structure includes: a guide piece; and an encapsulation component, wherein the guide piece is fixed to a side surface of a glass through the encapsulation component, wherein the guide piece includes a strip part, a bump and a positioning hole, wherein the strip part has a first surface, and a second surface opposite to the first surface and facing an interior of a vehicle body when the guide piece is mounted onto the vehicle body, the bump is located on and perpendicular to the first surface, the positioning hole is formed in the bump, an axis of the positioning hole is perpendicular to the side surface of the glass, and the positioning hole matches a positioning pin in an injection molding device in an injection molding process. A yield of encapsulation structures may be improved.