摘要:
A thermoplastic resin film that has an excellent heat insulating property, and a labeled plastic container produced by attaching the thermoplastic resin film by in-mold molding are provided. The film comprises at least one porous layer that satisfies the following conditions (A) and (B). (A) The porous layer includes 25 to 65 pts. mass of thermoplastic resin and 35 to 75 pts. mass of inorganic fine powders. (B) A pore length L of the porous layer as expressed by L=d×(ρ0−ρ)/ρ0 is 20 μm or longer. L denotes the pore length [μm] of the porous layer, d denotes a thickness [μm] of the porous layer, p denotes a density [g/cm3] of the porous layer, and ρ0 denotes a true density [g/cm3] of the porous layer.
摘要:
A labeled hollow molded container and molding method thereof are disclosed. The container presents good impact resistance when falling down. The main body wall thickness variable X of the container section, which is calculated from the optical microscopic observation, meets the following formula (1), −50≦X
摘要:
Provided is a thermoplastic resin film which has excellent antistatic performance and also has excellent printability and water resistance. A surface coating layer derived from metal oxide-containing microparticles and a dispersion of an organic polymer in a solvent is provided on at least one face of the thermoplastic resin film. The static charge half-life period S on the thermoplastic resin film face that is provided with the surface coating layer may be 300 seconds or shorter as measured by a half-life period measurement method stipulated in JIS L 1094:1997.
摘要翻译:提供一种具有优异的抗静电性能并且还具有优异的可印刷性和耐水性的热塑性树脂膜。 在热塑性树脂膜的至少一个面上设置由含金属氧化物的微粒衍生的表面被覆层和有机聚合物在溶剂中的分散液。 具有表面被覆层的热塑性树脂膜面上的静电荷半衰期S可以通过JIS L 1094:1997中规定的半衰期测定方法测定为300秒以下。
摘要:
There are provided a film excellent in easy cuttability and linear cuttability and suppressed in breakability in processing, and a roll and a pressure-sensitive adhesive tape, wherein the film has the tensile strength in one direction is 1.1 to 2.5 kN/m and the tensile strength in a direction orthogonal to the one direction is 3.0 to 10 kN/m, or the tensile strain at strength in one direction is 50 to 150% and the tensile strain at strength in a direction orthogonal to the one direction is 8 to 20%.
摘要:
A thermoplastic resin film of the present invention contains at least a base layer containing a thermoplastic resin and a heat seal layer containing a thermoplastic resin; a melting point of the thermoplastic resin contained in the heat seal layer is lower than a melting point of the thermoplastic resin of the base layer; a core roughness depth Rk of a surface of the heat seal layer being from 1.2 to 9.0 μm; and a ratio Rzjis/Rk of a ten point height of roughness profile Rzjis to a core roughness depth Rk of the surface of the heat seal layer measured in accordance with JIS B0601:2013 Appendix 1 being from 2.0 to 9.0.
摘要:
The present invention provides a labeled blow-molded container having a convex portion and/or a concave portion on a label face, and a blow molding mold. The labeled blow-molded container of the present invention including a blow-molded container containing a thermoplastic resin; and a label containing a thermoplastic resin film, the labeled blow-molded container being formed by the blow-molded container being thermally fused to a label; a label face of the container to which the label is affixed having a convex portion and/or a concave portion; and a height difference (h) representing a distance between the highest part of the label surface and the lowest part of the label surface being not less than 0.3 mm using the label face as a reference in a height direction.
摘要:
An in-mold label having a heat sealing layer formed on one surface of an olefinic resin film, wherein the heat sealing layer contains a thermoplastic resin satisfying (1) at least one crystallization peak occurs between 85 to 110° C. in differential scanning calorimetry and (2) the hot tack force at 130° C. is 120 to 350 gf/cm2, can reduce defects in a labeled container even when the container is produced in a short cycle time.