Abstract:
The present invention provides a birefringent lens material for a stereoscopic image display, the birefringent lens material containing two or more liquid crystal compounds each having at least one polymerizable functional group, a birefringent lens for a stereoscopic image display, the birefringent lens being formed by using the lens material, and a method for producing a birefringent lens for a stereoscopic image display using the lens material. The birefringent lens material for a stereoscopic image display and the birefringent lens for a stereoscopic image display of the present invention are good in terms of optical characteristics, durability, and productivity, in particular, productivity. The method for producing a birefringent lens for a stereoscopic image display of the present invention has good productivity.
Abstract:
There is described a hot-stamping press (10'; 10"; 10"') comprising a foil application unit (2; 2*) designed to allow transfer or lamination of foil material (FM) by hot-stamping onto a substrate (S) supplied in the form of successive sheets or successive portions of a continuous web, which foil material (FM) is fed to the foil application unit (2; 2*) in the form of a foil carrier (FC) supplied by means of a foil feeding system (3). The hot-stamping press (10'; 10"; 10"') further comprises at least one UV-curing unit (61; 62; 63) located along a path (A) of the substrate (S) downstream of the foil application unit (2; 2*) to subject the foil material (FM) transferred or laminated onto the substrate (S) to a UV-curing operation. The foil material (FM) is provided with an adhesive intended to ensure adhesion of the foil material (FM) onto the substrate (S), which adhesive comprises a combination of hot-melt compounds reacting to the application of heat produced by the foil application unit (2; 2*) and UV-curing compounds reacting to the application of ultraviolet radiation produced by the UV-curing unit (61; 62; 63).
Abstract:
The invention relates to a method for producing a multilayer film, comprising the following steps: a) providing a main body, which has a carrier ply and a transfer ply, which comprises at least one layer; b) applying an adhesive, in particular a UV-curing adhesive, to at least a partial region of the transfer ply of the main body; c) applying a stamping foil, which comprises a carrier ply and a transfer ply, such that the transfer ply of the stamping foil comes into contact with the transfer ply of the main body, which transfer ply is coated with adhesive; d) curing the adhesive by means of UV irradiation; e) removing the carrier ply of the stamping foil. The invention further relates to a device for carrying out said method and to the resulting multilayer film.
Abstract:
There is provided a polyimide layered product with a support which has a smooth surface to enable a sophisticated device to be formed thereon and in which the layered polyimide does not peel off even in a high-temperature process on device formation, and furthermore, the polyimide layered product can be peeled off easily from the support after the device is formed on the polyimide layered product. By preparing a polyimide film with a face at the support side and subjected to a surface treatment; subjecting at least one of a face of the support and the face of the polyimide film which are opposite to each other to a patterning treatment using a coupling agent to form a satisfactorily bondable part and an easily releasable part which differ in adhesion/peel strength; subsequently, superposing the support and the polyimide film to be subjected to a pressurizing/heating treatment and to be bonded to each other; subjecting the surface of the polyimide film to an organic alkali treatment; and then, applying a polyamic acid solution free from a slip agent ingredient, drying the coating film and imidizing the film, a layered product having a structure of at least three layers in which at least one layer contains a slip agent material and both surface layers have no slip agent material is produced.
Abstract:
Provided is a production method for an optical laminate, which is excellent in production efficiency even through use of a thin glass . The production method for an optical laminate of the present invention includes: a thin glass production step of producing a thin glass having a thickness of 100 µm or less; and a lamination step of laminating an optical film on one surface, or each of both surfaces, of the thin glass, the thin glass production step and the lamination step being performed in an integrated line, the lamination step including bonding the optical film onto the thin glass under a state in which the thin glass is supported.
Abstract:
System for forming a micro-truss reinforced structural member (10, 12) which includes a first collimated light source (14) and a reservoir (20) containing a volume of photo-monomer resin (18) wherein the first collimated light source (14) is positioned spaced apart from the photo-monomer resin (18). The system further includes a first face sheet structure (24) defining at least one bore (26) which extends through the first face sheet structure (24) wherein a portion of the first face sheet structure is positioned under a surface of the volume of photo-monomer resin such that photo-monomer resin (18) is positioned within the bore (26).
Abstract:
A method for producing a laminate for configuring an image display device is provided, capable of realizing simultaneously unevenness followability and anti-bubble reliability. A method for producing a laminate for configuring an image display device is proposed, comprising the following steps (1) and (2): (1) The step of forming an adhesive composition into the form of a monolayer or a multilayer sheet, and by UV-crosslinking, primary-curing this thereby forming a pre-secondary curing transparent double-sided adhesive sheet. (2) The step of layering two image display device-constituting members via the pre-secondary curing transparent double-sided adhesive sheet and then irradiating ultraviolet light from at least a first image display device-constituting member side, UV-crosslinking through this member and secondary-curing the pre-secondary curing transparent double-sided adhesive sheet.
Abstract:
An apparatus, comprising two conductive surfaces or layers and a nanostructure assembly bonded to the two conductive surfaces or layers to create electrical or thermal connections between the two conductive surfaces or layers, and a method of making same.
Abstract:
A water-based ink and a method to form a digital print with the water-based ink on a dense substrate including a polymer material or on surfaces that are heated and pressed after printing. The substrate is prior to the printing step preferably heated in order to prevent floating of the water-based ink drops.