Abstract:
A composite includes a first layer of a first fluoropolymer; a second layer of at least one ply of a reinforcing fabric overlying the first layer; and a third layer of a second fluoropolymer overlying the second layer opposite to the first layer, wherein the first layer, the third layer, or combination thereof have an outer surface that is defect free; wherein the composite has a continuous length of at least about 3 meters. Embodiments of such composites can find applications, for example, as processing aids for an electronic device, a food, a polymer, insulating an electrical device, or heat sealing a polymer.
Abstract:
A roll (10) of glass ribbon (20), having a thickness of 0.3 mm or less, wherein a thickness compliant material interlayer (40) is wound together with the glass ribbon. The characteristics of the interlayer are chosen to form the roll with minimal lateral offset (9). For example, the static coefficient of friction between the interlayer and the glass ribbon may be greater than or equal to 3.0 (as measured with a vertical force of 0.5 N). Other characteristics may include the width, thickness, and compliance, of the interlayer. There is also disclosed a method of rolling a glass ribbon wherein the roll winding parameters, for example web tension and pressure between the layers of the roll, are chosen to minimize the lateral offset.
Abstract:
The invention relates to a heat-shrinkable film comprising a first polymer ply A comprising at least one dark pigment, a second polymer ply B comprising at least one white pigment, wherein the thickness ratio of the first ply A is in the range 5:95 to 50:50, the film has a thickness of 20 µm to 100 µm, the light transmission of the film is not more than 12% and the film after 15 seconds in a water bath having a temperature of 95°C exhibits a shrinkage in the main shrinking direction in the range from 20% to 85%. The invention further relates to a hose comprising such a heat shrinkable film and to a process for producing such a shrinkable film.
Abstract:
The present invention relates to a method for manufacturing of a laminated cellulose-based liquid or semi-liquid food packaging material, wherein the laminated packaging material has a bulk material layer comprising a low-density cellulose spacer layer, an outside module comprising a substrate layer having a print surface and an inside material module comprising a barrier layer or barrier coating. The invention further relates the laminated packaging materials obtained by the method and to a packaging container for liquid food packaging, comprising the laminated packaging material or being made from the laminated packaging material obtained by the method.
Abstract:
A fabric with a laminated adhesive-backed protective layer. The adhesive-backed protective layer has a matte finish that is low gloss and may approximate the fabric itself
Abstract:
To provide a packing container featuring markedly improved slipping property and non-adhering property for the contents. In the packing container filled with a content 7, at least part of the surface that comes in contact with the content 7 is a liquid-permeable surface 1 which holds a liquid (lubricating liquid) 5 different from the content 7.
Abstract:
A plastic glazing (100) of a tailgate of a vehicle is provided, the plastic glazing (100) comprising: a first translucent component (302); a second translucent component (304) molded onto the first translucent component (302), wherein the second translucent component (304) comprises a color, wherein the plastic glazing (100) is of one-piece molded plastic construction, wherein an overlapping portion of the first translucent component (302) and the second translucent component (304) forms a lens of a first molded light assembly.
Abstract:
According to the present invention, provided are a molded article formed of a thermoplastic resin composition, the molded article having a mean deviation of surface frictional coefficient of 0.02 or more and 0.08 or less, a mean deviation of surface roughness of 4 µm or more and 12 µm or less, a work of compression of 0.05 gf·cm/cm 2 or more and 0.30 gf·cm/cm 2 or less, a bulk density of 0.20 g/cm 3 or more and 0.70 g/cm 3 or less, an area ratio of through-holes of less than 3%, and a thickness of 10 µm or more and 1000 µm or less, and a laminate having the molded article.
Abstract:
A method of forming a building panel or a surface element, including providing a substrate, applying a sub-layer on the substrate, applying a mesh structure on the sub-layer, and applying heat and pressure to the mesh structure such that the sub-layer at least partially fills meshes of the mesh structure. Also, to such a building panel and a surface element.
Abstract:
The present invention aims to provide an interlayer film for laminated glass which has a laminated structure including a plastic layer with a high Young's modulus and a resin layer, which is excellent in impact resistance and penetration resistance, which has high adhesiveness between the plastic layer and the resin layer, and which prevents blocking of the resin layer, and a laminated glass including the interlayer film for laminated glass. The present invention relates to an interlayer film for laminated glass, having a multilayer structure including: a plastic layer with a Young's modulus of 1 GPa or more; and a first resin layer on a first surface of the plastic layer, the first resin layer having a glossiness of 10 to 40 on the surface on the side to be in contact with the plastic layer.