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Chemical Blowing Agent-based Processing of Integral-skin Polypropylene Cellular Composites in Rapid Rotational Foam Molding

机译:基于化学发泡剂的基于基于旋转泡沫成型的整体皮肤聚丙烯细胞复合材料的处理

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The traditional rotational molding process is the most widely implemented technology for low-cost fabrication of low-volumes of hollow/double-walled large-sized, seamless and virtually stress-free, single-piece plastic articles with complex shapes and/or moderate undercuts. However, demanding industrial end-use applications often require lightweight rotationally molded articles that could resist harsh environments while simultaneously demonstrating buoyancy, enhanced mechanical strength, thermal and/or acoustic insulative properties, as well as improved strength-toweight ratios. In response to this need, over the years, several design modifications of the traditional rotational molding process advantageously enabled the manufacture of rotationally foam molded cellular composites having a distinct integral solid-skin that is fully encapsulating a foamed inner core or layer. Although the resulting cellular composite moldings were attributed with significantly enhanced properties compared to their hollow non-foamed predecessors, the inherent disadvantages of the traditional parent process, such as the very lengthy and energy-intensive processing cycle times and the very limited means for real-time process control, were only further aggravated. This paper focuses on a recently patented process that alleviates these drawbacks by replacing the close interactions between foamable and nonfoamable polymeric resins to their effective independence. It is referred to as Rapid Rotational Foam Molding (RRFM). An experimental study in the domain of processing polypropylene (PP)-based integral-skin cellular composites using the RRFM technology is presented in details. In this context, by successfully decoupling (segregating) the skingenerating/article-shaping processing phase from the foamed-core-processing segment, RRFM proved to provide a viable solution to the common previously faced challenges in the manufacture of PP foams surrounded by an integral-solid-PPskin with a desired
机译:传统的旋转成型过程是最广泛实现的技术,用于低成本的低型空心/双壁大型,无缝,几乎有压力,单件塑料制品,具有复杂的形状和/或中等底切。然而,要求苛刻的工业最终用途应用通常需要轻质的旋转模塑制品,其可以抵抗恶劣环境,同时表现出浮力,增强的机械强度,热和/或声学绝缘性,以及改善的强度 - 毛动率比。响应于这种需要,多年来,传统旋转模塑过程的若干设计修改有利地使得旋转泡沫模塑的细胞复合材料的制造具有独特的整体固体皮肤,其完全封装发泡内芯或层。尽管与其中空的非发泡前辈相比,所得的细胞复合材料的性能显着增强,但是传统父工艺的固有缺点,例如非常冗长和能量密集的加工循环时间和真实的非常有限的手段时间过程控制只会进一步加剧。本文侧重于最近专利的方法,通过替换可发泡和不可可燃聚合物树脂之间的密切相互作用来减轻其有效独立性的密切相互作用。它被称为快速旋转泡沫成型(RRFM)。详细介绍了使用RRFM技术的加工聚丙烯(PP)的整体皮肤细胞复合材料结构域的实验研究。在这种情况下,通过成功地解耦(分离)来自发泡核心处理区段的SkingEnerating /物品成形处理阶段,RRFM证明为普通的先前面对的挑战提供了一种可行的解决方案,该挑战在由积分的PP泡沫制造中-solid-ppskin,需要

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