Abstract:
PROBLEM TO BE SOLVED: To provide an in-mold decorative molded product capable of being irradiated with light from its back constituted so that a definite design pattern is clearly visually confirmed by the irradiation with light from the back and the pattern is assimilated with a peripheral shading part at the time of no-irradiation from the back to become inconspicuous in its presence. SOLUTION: The in-mold decorative molded product 1 capable of being irradiated with light from its back is constituted so that at least a light pervious decorative layer 5 is formed on at least the surface of a molded resin layer 2 and uneveness 7 is provided on the back of the molded resin layer and manufactured by arranging a transfer sheet 10 wherein at least the light pervious decorative layer 5 is formed on a substrate sheet 30 on the side of an A-mold 20, clamping the A-mold and a B-mold 21 capable of forming a desired uneven pattern 29, injecting a molding resin in the cavity formed by both molds to cool and solidify the same and opening the molds. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an in-mold decorative molded product capable of precisely patterning a cholesteric liquid crystal thin film and wide in the selection width of the material of a layer other than the cholesteric liquid crystal thin film, and its manufacturing method. SOLUTION: The in-mold decorative molded product is constituted by forming at least a patterned decorative layer 38 on the surface of a transparent molded resin layer 2 and forming at least a cholesteric liquid crystal layer 34 on the back of the transparent molded resin layer 2 and manufactured by arranging a transfer sheet A1, wherein at least the cholesteric liquid crystal layer is formed on a substrate sheet, on the side of an A-mold 6, arranging a transfer sheet B3, wherein at least the patterned decorative layer is formed on the substrate sheet on the side of a B-mold 7, clamping the A-mold and the B-mold to inject a molding resin in the cavity formed by both molds, cooling and solidifying the molding resin and subsequently open both molds to manufacture the in-mold decorative molded product. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an acrylic mat film and an acrylic mat printed film solving problems such as agglomeration of matting agents and unevenness of the matting agent in a film mixed with the matting agent. SOLUTION: This acrylic mat film 121 can be formed into an acrylic mat printed film for simultaneous molding and decoration by forming a print layer 3. Further in this film, the dispersity D(%) of the matting agent 2 in the acrylic mat film, the surface gloss value Gs 0 according to JIS Z 8741 measured from the opposite surface 121b to the surface 121a of the acrylic mat film 121 before disposing the print layer 3, and the arithmetic mean roughness Ra 2 (μm) of roughness curves on the surface 121a of the acrylic mat film 121 before disposing the print layer 3 satisfy the following inequalities: 45≤D≤100; 3≤Gs 0 ≤10; 0.01≤Ra 2 ≤0.5. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing method for a decorative article by using a sheet having a decorating article, wherein the decorating of a positionally slipped article can be avoided, and thus, decorating materials or articles are not wasted. SOLUTION: A radiation apparatus which can diagonally cast two or more laser beams to a carried sheet having a decorating article, and a detector which corresponds to the radiation apparatus are set in advance in such a manner that only when the articles being temporarily fixed on a supporting body are carried without a positional slipping, the laser beams for all articles may be simultaneously become undetectable by the reflection at the end edges of the articles. Then, only when the laser beams for all articles simultaneously become undetectable, the decorating is applied to the articles. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a printing material determination program capable of rapidly preparing for a printing material even if an excess stock is not always prepared and capable of reducing the excess and deficiency of the printing material to the utmost to suppress the quantity of a stock. SOLUTION: The printing material determination program is equipped with a step for searching the kind of printed matter printed in the past nearest to the kind of new printed matter to store a yield average value μ and a standard deviation value σ, a step for urging the input of printing efficiency X corresponding to a yield value capable of suppressing the deficiency of printing quantity due to the printing failure of the new printed matter and an arithmetic process for calculating the deficient quantity of the printing material on the basis of (M×100/X)-Y1 when the printing efficiency X satisfies a numerical value range of μ-8σ
Abstract:
PROBLEM TO BE SOLVED: To provide a decorating sheet wherein whitening does not occur even when a load applying process is performed. SOLUTION: A decorating layer 6 is formed on a base body sheet 7, and the load applying process is performed for this decorating sheet 1. For such a decorating sheet 1, a round bar type edge 2 made of brass having a diameter of 4 mm is brought into contact with the decorating layer 6. Then, the surface of the decorating layer 6 is vibrated by a load of 98 mN with the contact point as a fulcrum by a rigid body pendulum type free vibration decay method. When a surface temperature of the decorating layer 6 when a vibration cycle S obtained by the free vibration decay method of rigid pendulum type becomes 70% of a vibration cycle S0 at 25 deg.C is taken as T deg.C, and the brightness of the decorating layer 6 by a CIE (International Commission of Illumination) 1976 (JIS Z8729) L*a*b* color specification system is taken as L, the decorating sheet 1 has a section wherein a relationship of T
Abstract:
PROBLEM TO BE SOLVED: To integrate a decorative sheet with even a deep draw article so as to follow the surface of the article. SOLUTION: In an in-mold decorating molding sheet 1 constituted of at least a substrate sheet 2 and a pattern layer 3 and set to an injection mold to be integrally bonded to the surface of a molding resin, the substrate sheet 2 comprises a polyester film and, when a test piece of the decorated sheet with a width of 80 mm is fixed between a pair of chucks, which are spaced apart from each other by a distance of 100 mm, under an environmental temp. of 110 deg.C and a tensile test is executed while load is applied to one end of the test piece at a constant speed of 100 mm/min, the stress value of the decorated sheet is 0.008-0.8 kgf when a tensile elongation is 150%.
Abstract:
PROBLEM TO BE SOLVED: To obtain a method for manufacturing a decoration sheet having a protrusion and recess pattern capable of accurately forming a desired print layer in a recess part of a base material sheet without dividing or transmitting a metal thin film layer. SOLUTION: The method for manufacturing a decoration sheet having a protrusion and recess pattern by shaping one surface of a base material sheet 1 in a protrusion and recess shape by embossing and at least a print layer 2 and a metal thin film layer at least on the pattern surface comprises the steps of forming the layer 2 at least duplicated on part or entirety of the recess part 1a of the patter on the sheet 1 before embossing, and forming the metal thin film layer after the embossing.
Abstract:
PROBLEM TO BE SOLVED: To prevent a breakage in injection molding by using a polypropylene having excellent surface strength and light resistance for a base material film. SOLUTION: The sheet 3 for molding and simultaneously laminating has 23 gf or above of a tensile break load when a test piece of the sheet for molding and simultaneously laminating of 10 mm of a width is fixed at a distance of 5 mm between a pair of chucks by using the chucks, one end of the piece is applied by a load at a predetermined speed of 500 mm/min at an environmental temperature of 62 to 94 deg.C and a tensile test is executed. A base material film 1 of the sheet 3 is made of a single layer film of a transparent low crystalline operation polypropylene film. A pencil hardness value of the method of measuring according to JIS K 5400 at an opposite surface to a surface of the side to be adhered to a molding resin 10 of the film 1 is 3B to B of hardness. At least one or above of additives selected from an ultraviolet absorbent, light stabilizer and ultraviolet screening agent are contained so that a haze value of a molding resin 11 of the film 1 of the method of measuring according to JIS K 7105 becomes 2 to 30%.
Abstract:
PROBLEM TO BE SOLVED: To protect a molded product from getting weaker in its metal coloring and also protecting matters at the back of a metal coloring layer from being seen through. SOLUTION: An indium-aluminum deposited film, in the constitution of which an indium deposited layer 2 is formed on a base film 1 and as required, an aluminum deposited layer 3 and a bonding layer 4 are formed on the indium deposited layer through an anchor layer, is set in an injection molding die, and the base film of the deposited film is, as required, integrated on the surface of a resin molded product 5 through the bonding layer by heat and pressure at the time of injection molding.