发明名称 Process for producing molded article of expanded polyolefin-based resin beads, and molded article of expanded polyolefin-based resin beads
摘要 A process produces a polyolefin-based resin expanded beads molded article that is excellent in bending deflection characteristics, high in porosity, low in bulk density and light in weight, and has interconnected void spaces. The process comprises filling, in a mold cavity, multi-layered polyolefin-based resin expanded beads each of which has a cylindrical, polyolefin-based resin expanded core layer and a polyolefin-based resin outer layer covering the expanded core layer and which satisfy specific requirements, introducing steam in the mold cavity to heat the multi-layered expanded beads filled in the mold cavity to fuse bond and mold the multi-layered expanded beads in the mold cavity.
申请公布号 US9079360(B2) 申请公布日期 2015.07.14
申请号 US201113994387 申请日期 2011.12.08
申请人 JSP CORPORATION 发明人 Nohara Tokunobu;Shinohara Mitsuru;Chiba Takuya;Oikawa Masaharu
分类号 B29C67/20;C08J9/00;C08J9/12;C08J9/18;C08J9/232 主分类号 B29C67/20
代理机构 Bacon & Thomas, PLLC 代理人 Bacon & Thomas, PLLC
主权项 1. A process for producing a polyolefin-based resin expanded beads molded article having interconnected void spaces, comprising: providing multi-layered polyolefin-based resin expanded beads each having a cylindrical, polyolefin-based resin expanded core layer and a polyolefin-based resin outer layer covering the expanded core layer, filling the multi-layered polyolefin-based resin expanded beads in a mold cavity, and then introducing steam in the mold cavity to heat the multi-layered polyolefin-based resin expanded beads filled in the mold cavity, so that the multi-layered polyolefin-based resin expanded beads are fuse-bonded together and molded in the mold cavity, wherein said provided multi-layered polyolefin-based expanded beads satisfy the following requirements (a) to (d), (a) the multi-layered polyolefin-based resin expanded beads have an apparent density of 10 to 200 g/L, and (b) the multi-layered polyolefin-based resin expanded beads, when measured by heat flux differential scanning calorimetry in which 2 to 10 mg thereof are heated from 23° C. to 220° C. at a heating speed of 10° C./min, give a DSC curve having an endothermic peak “A” which is intrinsic to the polyolefin-based resin and one or more endothermic peaks “B” which are located on a higher temperature side of the endothermic peak “A” and which have a heat of fusion of 50 J/g or less, and (c) the polyolefin-based resin forming the expanded core layer of each of the multi-layered polyolefin-based resin expanded beads has a melting point Tc and the polyolefin-based resin forming the outer layer of each of the multi-layered polyolefin-based resin expanded beads has a melting point Ts, wherein Tc and Ts satisfy the equation Tc(° C.)>Ts(° C.), (d) each of the multi-layered polyolefin-based resin expanded beads satisfies the equations dMIN≧1.0 (mm) and dMIN/DMIN≦0.70, and wherein dMIN represents a minimum diameter in mm of the throughhole of the multi-layered polyolefin-based resin expanded bead as measured on a cross-section taken along a plane normal to the axial direction of the throughhole and DMIN represents a minimum diameter in mm of the expanded bead as measured on said cross-section, and (e) the polyolefin-based resin expanded core layer and the polyolefin-based resin outer layer are formed of polypropylene-based resins, wherein the polypropylene-based resin forming the expanded core layer has a bending modulus of Mc and the polypropylene-based resin forming the outer layer has a bending modulus of Ms and wherein Mc and Ms satisfy the equations Mc≦1300 (MPa) and 50≦Mc−Ms≦600 (MPa).
地址 Tokyo JP