摘要:
Provided is a capacitive touch sensor, in which an adhesion layer can be prevented from being whitened by water vapor, while deterioration of optical characteristics is prevented. A transparent base material sheet (312), a transparent conductive-film layer (313), and a transparent adhesion layer (314) are formed on a protection sheet (311). The adhesion layer (314) is formed on the transparent conductive-film layer (313) so as to cover the transparent conductive-film layer (313). The protection sheet (313) has a water vapor transmission rate of 1 g/(m2·day·atm) or smaller, and an in-plane direction retardation value of 20 nm or smaller at a wavelength of 550 nm. The base material sheet (312) has an in-plane direction retardation value of 20 nm or smaller at a wavelength of 550 nm.
摘要:
As Technical Problem, provided is a transfer sheet using graphene as a transparent conductive material, and a transparent conductor. As solution problem, there is provided a transfer sheet that includes a substrate sheet having releasability and smoothness, a metal thin film layer partially or entirely formed on the surface of the substrate sheet to reflect the smoothness of the substrate sheet, and a transparent conductive film layer formed on the metal thin film layer and mainly composed of graphene.
摘要:
An in-mold decorating sheet is set in an injection mold and, after clamping the mold, molten molding resin is injected into the mold and allowed to cool and solidified, and part of the in-mold decorating sheet is integrally bonding to a surface of the molding resin, by which a molded resin product is obtained. After these processes, when the in-mold decorating sheet is peeled off from the surface of the molded resin product in compliance with conditions of ASTM D903, the in-mold decorating sheet has a peel strength of at least not less than 1 kgf/inch width or the in-mold decorating sheet breaks before reaching the peel strength. Therefore, an unnecessary portion of the in-mold decorating sheet is easy to trim from the surface of the molded resin product.
摘要:
A foil-decorating sheet comprised by a laminated film of two or more kinds of films which is to be set in an injection mold for being integrally bonded to a surface of a molding resin, wherein after a foil-decorating is made, a bonding surface-side film of the laminated film which is bonded to the molding resin has a peel strength of not less than 1 kgf/inch width at least at an interface between the surface film of the laminated film bonded to the molding resin and the molding resin, and wherein at least a transparent acrylic film is laminated on the bonding surface-side film bonded to the molding resin, with a decorative layer formed between the bonding surface-side film bonded to the molding resin and the acrylic film.
摘要:
An anti-reflection molding has a transparent substrate and an anti-reflection layer provided at least on a surface of the transparent substrate, an interface of a transparent window on which the anti-reflection layer is formed has an average surface roughness Ra of between 2.0 and 150 nm, and the molding has a curved surface having a radius of curvature of not less than 40 mm and protruding on a surface side, or a flat surface, in the transparent window.
摘要:
As Technical Problem, provided is a transfer sheet using graphene as a transparent conductive material, and a transparent conductor. As solution problem, there is provided a transfer sheet that includes a substrate sheet having releasability and smoothness, a metal thin film layer partially or entirely formed on the surface of the substrate sheet to reflect the smoothness of the substrate sheet, and a transparent conductive film layer formed on the metal thin film layer and mainly composed of graphene.
摘要:
A foil-decorating sheet (4) comprised by a laminated film of two or more kinds of films which is to be set in an injection mold (5, 6) for being integrally bonded to a surface of a molding resin (10), wherein after a foil-decorating is made, a bonding surface-side film (3) of the laminated film which is bonded to the molding resin (10) has a peel strength of not less than 1 kgf/inch width at least at an interface between the surface film (3) of the laminated film bonded to the molding resin (10) and the molding resin (10), and wherein at least a transparent acrylic film (1) is laminated on the bonding surface-side film (3) bonded to the molding resin, with a decorative layer (2) formed between the bonding surface-side film (3) bonded to the molding resin and the acrylic film (1).