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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Development of a Hybrid Solid-Microcellular Co-injection Molding Process
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Development of a Hybrid Solid-Microcellular Co-injection Molding Process

机译:固体-微孔混合注射成型工艺的发展

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This paper presents the development of a hybrid solid-micro-cellular co-injection molding process that combines aesthetic and processing advantages of injection molding with benefits and property attributes of microcellular plastics (MCPs).A two-color injection molding machine has been modified and equipped with an interfacial platen and a supercritical fluid (SCF) unit for co-injection molding with regular resins and MCPs.Co-injection molded polystyrene (PS) parts with a microcellular core encapsulated by the solid skin layer have been successfully produced.Systematic experiments were carried out with solid-micro cellular co-injection molding,conventional solid-solid co-injection molding,and regular microcellular injection molding processes to study the effects of process conditions and core/skin volume ratios on the penetration and morphology of the microcellular core.Light microscopy and scanning electron microscopy (SEM) of the solid-microcellular co-injection molded specimens reveal a microcellular core with fairly fine and uniform cell size of 8 to 12 microns and a cell density of up to 3x10~8 cells/cm~3.Under similar process conditions,microcellular cores were found to penetrate longer and generate a more uniform and thicker skin layer than do solid cores.While improving the surface finish with solid skin layers,this process is capable of producing parts with reduced sink marks,lighter part weights,and shorter cycle times.
机译:本文介绍了混合固-微孔共注射成型工艺的发展,该工艺结合了注射成型的美学和加工优势以及微孔塑料(MCPs)的优点和性能属性。装有界面压板和超临界流体(SCF)单元,用于与常规树脂和MCP共注塑成型。已成功生产了共注入成型的聚苯乙烯(PS)零件,其具有被固体表层包裹的微孔核心。系统实验通过固-微孔共注射成型,常规固-固共注射成型和常规微孔注射成型工艺进行研究,以研究工艺条件和芯/皮体积比对微孔芯渗透性和形态的影响固体-微孔共注射成型样品的光学显微镜和扫描电子显微镜(SEM)一个微细的细胞核,其细小且均匀的细胞大小为8至12微米,细胞密度高达3x10〜8个细胞/ cm〜3。在相似的工艺条件下,发现微细胞的核穿透时间更长,并产生更均匀的与实心芯相比,表皮层更厚。在使用实心皮层改善表面光洁度的同时,此工艺能够生产出具有减少的缩痕,更轻的零件重量和更短的循环时间的零件。

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