Patent classifications
B32B27/24
GAS BARRIER FILM
A gas barrier film includes a resin substrate and an oxygen barrier coating film in contact with a first surface of the resin substrate. The resin substrate includes two or more resin layers including a base layer. Of the two or more resin layers, a resin layer forming the first surface of the resin substrate does not contain an anti-blocking agent.
THREE-DIMENSIONALLY SHAPED OBJECT FORMING SHEET, THREE-DIMENSIONALLY SHAPED OBJECT AND PRODUCTION METHOD FOR SAME, AND PRODUCTION METHOD FOR DECORATED THREE-DIMENSIONAL OBJECT
A three-dimensionally shaped object forming sheet includes: a thermally expansive layer distending at a predetermined temperature or higher; a base laminated on one side thereof with the thermally expansive layer; and a photothermal conversion layer for converting absorbed light to heat, formed on at least one side, wherein the base includes a first base and a second base that are laminated; and the first base has an elasticity that is greater than an elasticity of the second base.
THREE-DIMENSIONALLY SHAPED OBJECT FORMING SHEET, THREE-DIMENSIONALLY SHAPED OBJECT AND PRODUCTION METHOD FOR SAME, AND PRODUCTION METHOD FOR DECORATED THREE-DIMENSIONAL OBJECT
A three-dimensionally shaped object forming sheet includes: a thermally expansive layer distending at a predetermined temperature or higher; a base laminated on one side thereof with the thermally expansive layer; and a photothermal conversion layer for converting absorbed light to heat, formed on at least one side, wherein the base includes a first base and a second base that are laminated; and the first base has an elasticity that is greater than an elasticity of the second base.
Paint Film Appliques with Reduced Defects, Articles, and Methods
In-situ polymerized polymer film facilitates improved paint film appliques with reduced defects. The paint film appliques comprise the in-situ polymerized polymer film as a carrier layer. The carrier layer is colored and, preferably defect-free.
THERMALLY EXPANDABLE FIRE-RESISTANT RESIN COMPOSITION, THERMALLY EXPANDABLE FIRE-RESISTANT SHEET, AND METHOD FOR INSTALLING THERMALLY EXPANDABLE FIRE-RESISTANT SHEET
A thermally expandable fire-resistant resin composition contains a metallocene plastomer; a nitrogen-containing foaming agent; a phosphorus flame retardant; a polyhydric alcohol; and a titanium dioxide.
THERMALLY EXPANDABLE FIRE-RESISTANT RESIN COMPOSITION, THERMALLY EXPANDABLE FIRE-RESISTANT SHEET, AND METHOD FOR INSTALLING THERMALLY EXPANDABLE FIRE-RESISTANT SHEET
A thermally expandable fire-resistant resin composition contains a metallocene plastomer; a nitrogen-containing foaming agent; a phosphorus flame retardant; a polyhydric alcohol; and a titanium dioxide.
Self-repairing and self-sealing waterproof membrane, for insulating built structures subjected to hydrostatic pressure
A self-repairing and self-sealing waterproof membrane, for insulating built structures subjected to hydrostatic pressure, includes a first layer of hermetic polymeric material, which covers a second layer of water-expanding polymeric material, in which additives of polymeric and/or mineral origin are added, arranged in contact with the concrete surface of the structure. The second layer includes a plurality of sublayers which are contiguous and have different expanding actions and mechanical characteristics. The membrane has substantially the shape of a continuous flat sheet, which gives the membrane the appearance of a uniform film, having a thickness between 0.2 and 5.0 mm and being composed of one or more of the following polymers: TPE, TPO, TPU, EVA, EPDM, EPM, HDPE, MDPE, LDPE, PE, PVC and other elastomeric or polymeric polymers, containing optional additions of fillers and other ingredients to give the article the necessary requirements of workability, mechanical strength, and durability.
Self-repairing and self-sealing waterproof membrane, for insulating built structures subjected to hydrostatic pressure
A self-repairing and self-sealing waterproof membrane, for insulating built structures subjected to hydrostatic pressure, includes a first layer of hermetic polymeric material, which covers a second layer of water-expanding polymeric material, in which additives of polymeric and/or mineral origin are added, arranged in contact with the concrete surface of the structure. The second layer includes a plurality of sublayers which are contiguous and have different expanding actions and mechanical characteristics. The membrane has substantially the shape of a continuous flat sheet, which gives the membrane the appearance of a uniform film, having a thickness between 0.2 and 5.0 mm and being composed of one or more of the following polymers: TPE, TPO, TPU, EVA, EPDM, EPM, HDPE, MDPE, LDPE, PE, PVC and other elastomeric or polymeric polymers, containing optional additions of fillers and other ingredients to give the article the necessary requirements of workability, mechanical strength, and durability.
THERMOPLASTIC SHEETS AND ARTICLES WITH VARIABLE LOFTING CAPACITY
Certain configurations are described herein of a thermoplastic sheet or article comprising a plurality of porous layers coupled to each other. In one configuration, the thermoplastic article may comprise a core layer, a first layer disposed on one surface of the core layer and a second layer disposed on another surface of the core layer. In some instances, each of the core layer, the first layer and the second layer may comprises a web of open celled structures formed by a plurality of reinforcing materials bonded together with a thermoplastic material and optionally may also include a lofting agent. The lofting capacity in different layers can be selected or tuned to provide desired properties.
THERMOPLASTIC SHEETS AND ARTICLES WITH VARIABLE LOFTING CAPACITY
Certain configurations are described herein of a thermoplastic sheet or article comprising a plurality of porous layers coupled to each other. In one configuration, the thermoplastic article may comprise a core layer, a first layer disposed on one surface of the core layer and a second layer disposed on another surface of the core layer. In some instances, each of the core layer, the first layer and the second layer may comprises a web of open celled structures formed by a plurality of reinforcing materials bonded together with a thermoplastic material and optionally may also include a lofting agent. The lofting capacity in different layers can be selected or tuned to provide desired properties.