Abstract:
A composite sheet includes a graphite layer, a heat insulation layer including a fiber and a heat insulation material and a fiber layer located between the graphite layer and the heat insulation layer, wherein the fiber layer comprises the fiber. An electronic apparatus includes an electronic component that involves heat generation, a housing and the composite sheet, wherein the composite sheet is placed between the electronic component and the housing.
Abstract:
A laminate comprises one or more electrically-conductive layers and one or more electrically-insulative layers coupled to the electrically-conductive layer(s). Each of the electrically-conductive layer(s) can comprise at least 90% by weight of copper. Each of the electrically-insulative layer(s) can comprise a layer of polymeric aerogel. For at least one of opposing front and back surfaces of the laminate, at least a portion of the surface is defined by one of the electrically-conductive layer(s).
Abstract:
A composite non-vision insulation panel unit comprising an exterior sheet and an interior sheet which define a cavity there between, said cavity housing one or more insulation panels. The insulation panel(s) is/are spaced apart from said interior and exterior sheets respectively by means of a damping material having a shore A hardness value in the range of from 0 to 60 according to ASTM D 2240-05(2010), and the composite non-vision insulation panel unit is sealed with a sealant which maintains the cavity width between said interior and exterior sheet and encloses the cavity of the composite non-vision insulation panel units.
Abstract translation:一种复合非视觉绝缘板单元,其包括在其间限定空腔的外部片材和内部片材,所述腔体容纳一个或多个绝缘面板。 绝缘板通过根据ASTM D 2240-05(2010)的0至60°的Shore A硬度值的阻尼材料分别与所述内部和外部片材间隔开,以及 复合非视觉绝缘板单元用密封剂密封,密封剂保持所述内部和外部片材之间的空腔宽度并且包围复合非视觉绝缘板单元的空腔。
Abstract:
An architectural membrane structure preferably includes an aerogel material disposed, for example, between two outer layers. The aerogel can be in monolithic or granular form or can be present in an aerogel composite. A method for manufacturing an architectural membrane structure includes securing an insert, e.g., an aerogel blanket, composite or granular aerogel, between a first and second layer. The architectural membrane structure can be used as a tensioned panel in envelopes such as roofing, overhangs, canopies or in other architectural or structural fabric applications.
Abstract:
An extruded multilayer film includes a top layer comprising a blend of a polyolefin and adsorbent silica. The adsorbent silica is 5% or more of the blend and the polyolefin is 95% or less of the blend. The multilayer film is oriented in at least one direction to cause fracturing of the top layer to provide a microporous surface exposing the adsorbent silica gel. The fractured top layer is receptive to receiving a printing ink on an exposed surface thereof with enhanced pigment entrapment and rapid ink drying. A single layer film in the form of the top layer, and also oriented in at least one direction also constitutes a part of this invention.
Abstract:
A method for preparing a metal part pressurised under isentropic, shock-type or compression-type, uniaxial deformation conditions, so as to measure the temperature of same by optical pyrometry. The method includes forming an emissive coating on a face of the metal part, having a thickness of 250 to 550 nm, and fixing an anvil-shaped window on the emissive coating. The emissive coating includes a first and a second layer of amorphous carbon, the first layer being inserted between the face of the metal part and the second layer, and having a carbon hybridisation rate sp3 greater than the carbon hybridisation rate sp3 of the second layer. A method for measuring, by optical pyrometry, the temperature of a metal part pressurised under isentropic, shock-type or compression-type, uniaxial deformation conditions.
Abstract:
The present invention provides articles and methods related to insulation panels made from aerogels, and specifically polyimide based aerogels. Such insulation panels have a wide variety of applications, including specifically in aerospace applications.
Abstract:
A composite sheet includes a graphite layer, a heat insulation layer including a fiber and a heat insulation material and a fiber layer located between the graphite layer and the heat insulation layer, wherein the fiber layer comprises the fiber. An electronic apparatus includes an electronic component that involves heat generation, a housing and the composite sheet, wherein the composite sheet is placed between the electronic component and the housing.
Abstract:
The invention provides hydrophobic silica wet gel, hydrophobic silica aerogel, and methods that can be used to form an enhanced hydrophobic silica aerogel sheet having an advantageous combination of properties. Some embodiments of the invention provide a hydrophobic silica aerogel having advantageous properties, such as desirable performance on visible transmission, haze, or both.
Abstract:
A laminate can include one or more thermally-insulative layers, each having a thermal conductivity that is less than or equal to 0.05 W/m·K, wherein the laminate has a thickness that is less than or equal to 500 μm and a thermal diffusivity that is less than or equal to 0.10 mm2/s. The laminate can include an adhesive layer, wherein aback surface of the laminate is at least partially defined by the adhesive layer or a liner layer that is removably disposed on the adhesive layer. The laminate can include a protective layer that defines at least a portion of a front surface of the laminate, wherein the protective layer has a thermal conductivity that is at least 3.5 times the thermal conductivity of each of the thermally-insulative layer(s).