Abstract:
PROBLEM TO BE SOLVED: To prevent foil burrs from being generated when a base film is released. SOLUTION: A layer for preventing foil burrs from being generated is formed in a non-transfer region of a base material film composed of a polyester film with a thickness of 50 μm, using ink composed of a two-pack cured urethane resin. Further, a release layer is formed in the entire region of a transfer region and the non-transfer region using a UV-cured resin ink and a pictorial pattern of a window part of a mobile telephone is formed as a pictorial pattern layer in the transfer region, using ink composed of an acrylic resin. Finally an adhesive layer is formed in the entire region of the transfer region and the non- transfer region, using ink composed of a copolymer resin ink of a polyvinyl chloride and a polyvinyl acetate.
Abstract:
PROBLEM TO BE SOLVED: To obtain a transfer material having both a blocking resisting property and an antistatic property. SOLUTION: At least a decorative layer 3 and an adhesive layer 6 are formed on one surface of a base film 2, and on the other surface, a first back ink layer 7 having a blocking resisting property and a second back ink layer 12 having an antistatic property are formed sequentially.
Abstract:
PURPOSE:To obtain resistance and surface strength by forming a transfer layer in which an adhesive layer, a design layer and a peeling layer of a thermoplastic resin are sequentially laminated on a surface of a resin molded form, and forming a coating film layer of ultraviolet curing resin or thermosetting resin thereon. CONSTITUTION:A transfer layer in which an adhesive layer 4, a design layer 3 and a peeling layer 2 made of thermoplastic resin are sequentially laminated is formed on a surface of a resin molded form 8, and a coating film layer 9 made of ultraviolet curb resin or thermosetting resin is formed on its surface, thereby forming a surfacing product. The layer 2 is decorated on a surface of the form 8 by using a transfer sheet made of thermoplastic resin, and coated with the ultraviolet curable resin or the thermosetting resin. Further, the sheet is formed by sequentially laminating the layer 2 made of the resin, a previously anchoring layer 5, a metal thin film layer 6, a later anchoring layer 7 and the layer 4 on the upper surface of a base sheet. Thus, resistance and surface strength of the object are obtained.
Abstract:
PROBLEM TO BE SOLVED: To eliminate inclusion of foreign matter or a notch on a surface of a material to be decorated by a difficulty in adhesion of a fine foreign matter or a dust to a decorative material. SOLUTION: The decorative material comprises at least a decorative layer 3 and an adhesive layer 6 formed on one surface of a base film 2, and a back surface ink layer 1 having antistatic properties and formed on the other surface so that the layer 7 contains a conductive resin and has a thickness of 0.2 to 100×10-4 mm.
Abstract:
PROBLEM TO BE SOLVED: To provide a mat hard coat transfer material wherein a hard coat can be surely separated from a mat layer along an interface and a mat part is provided, and a decoration having high surface strength can be formed. SOLUTION: In the mat hard coat transfer material 1 wherein at least a mat layer 3, which is not separated from a base sheet 2, a hard coat layer 4, and an adhesive layer 6 are laminated on the sheet 2, the hard coat layer 4 comprises a urethane acrylate resin of 50-70 wt.%, an acrylic resin of 27-49 wt.%, and a surface reinforced material of 1-3 wt.%.
Abstract:
PROBLEM TO BE SOLVED: To prevent foil flash originating from a transfer material from sticking to a mold during continuous molding by making the thickness of the transfer layer of a non-transfer part nipped by the mold larger than the thickness of the transfer layer of a transfer part adjacent to a molding resin. SOLUTION: A transfer layer 6 consisting of a peelable layer, a pictorial pattern layer and an adhesive layer is formed on a base sheet 2. The material of the base sheet 2 to be used is a resin sheet of a polypropylene resin or the like, a metallic foil, a cellulose sheet such as a glassine paper or the like. In addition, in the transfer material with the transfer layer 6 formed, the thickness of the transfer layer 6 of a non-transfer part nipped by a mold is set larger than the thickness of the transfer layer 6 of a transfer part adjacent to a molding resin 9. That is, a gap equivalent to the difference between the thickness of the transfer layer 6 of the non-transfer part and the thickness of the transfer layer 6 of the transfer part, is generated between the core part 8 and the cavity part 7 of the mold, when the mold is clamped. Thus foil flash is not pressed to the mold by the mold clamping pressure, so that the foil flash is prevented from fixedly sticking to the mold.
Abstract:
PURPOSE:To provide a transfer material wherein a crack is not caused in an anchor layer and a surface protective layer even when the transfer material is transferred along the corner parts, etc., of three-dimensional moldings. CONSTITUTION:A surface protective layer 2 incorporating ionizing radiation hardening resin as a main component is provided on the mold release surface of a mold releasing sheet 1 constituted of a polyethylene terephthalate film. An anchor layer 3 is provided thereon wherein modified vinyl resin, acrylic resin and saturated polyester resin are mixed in the range of 2-5%, 10-20% and 0.5-1.5% for 100% ink. An adhesive layer 4 constituted of acrylic resin is provided thereon.
Abstract:
PROBLEM TO BE SOLVED: To prevent deformation, such as warp, generated in a resin product and members composing the resin product after processing.SOLUTION: A heat-softened substrate film 60 together with a heat-softened cover sheet 50 is pressed to a preform core 45 to deform the substrate film 60 and the cover sheet 50. In a first cooling step, the substrate film 60 and the cover sheet 50 are cooled, in a state of pressing them to the preform core 45, to a level capable of maintaining a state where the deformed substrate film 60 is covered with the deformed cover sheet 50. The substrate film 60 and the cover sheet 50 having been subjected to the first cooling step are taken out from the preform core 45. While maintaining a state where the taken-out substrate film 60 is covered with the substrate film 60, the substrate film 60 and the cover sheet 50 are further cooled in a second cooling step. The cover sheet 50 is removed from the substrate film 60 after the second cooling step.
Abstract:
PROBLEM TO BE SOLVED: To provide a pair of firmly welded moldings even when a layer containing a different resin is present at the welded surface. SOLUTION: The pair of moldings is composed of a first molding 11 made of a thermoplastic resin and having a first front surface 12 and a first back surface 13 and a second molding 21 made of a thermoplastic resin and having a second front surface 22 and a second back surface 23. The first and second moldings are welded. The pair of moldings has perforations 24a piercing through the second front surface 22 and the second back surface 23 and projections 14a which project from the first back surface 13, are inserted into the perforations from the side of the second front surface and welded in the perforations and/or near the perforations of the second back surface. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To obtain a pair of moldings which can improve the strength of a fixing surface and is subjected to ultrasonic fusion. SOLUTION: A pair of the moldings is constituted of a first molding 11 which is made of a thermoplastic resin and has a first fixing surface 12 and a second molding 21 which is made of a thermoplastic resin and has a second fixing surface 22. The first fixing surface 12 and the second fixing surface 22 are engaged with each other to fix the moldings to each other by the ultrasonic fusion. The first fixing surface 12 has an ultrasonic fusion rib 13 melted by being irradiated with ultrasonic waves, and the second fixing surface 22 has crimps deformed by heat transmitted from the ultrasonic fusion rib. COPYRIGHT: (C)2007,JPO&INPIT