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Critical processing parameters for foamed bead manufacturing in a lab-scale autoclave system

机译:实验室规模的高压釜系统中泡沫珠制造的关键工艺参数

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In recent years, bead foaming technology has been of great interest to researchers because it represents a breakthrough in the production of low density plastic foamed components that have a complex geometrical structure. This helps to expand the market for plastic foams by broadening their applications. Despite earlier, valuable studies on the characterization and manufacture of bead foams, there has been little investigation of the critical parameters in the foamed bead manufacturing process. To provide an insight into the mechanism behind bead foaming technology, a lab-scale autoclave system for foamed bead manufacturing is developed and the critical processing parameters were studied. Foamed beads were obtained under various processing conditions with this lab-scale system while using carbon dioxide as the blowing agent. The cellular morphology and melting/crystallization behaviours of the beads are examined and discussed.
机译:近年来,珠发泡技术已引起研究人员的极大兴趣,因为它代表了具有复杂几何结构的低密度塑料发泡部件生产的突破。通过扩大塑料泡沫的应用范围,这有助于扩大塑料泡沫的市场。尽管在珠粒泡沫的表征和制造方面进行了较早的有价值的研究,但很少研究泡沫珠粒制造过程中的关键参数。为了提供对珠发泡技术背后的机理的了解,开发了用于泡沫珠制造的实验室规模的高压釜系统,并研究了关键的加工参数。使用该实验室规模的系统,同时使用二氧化碳作为发泡剂,可以在各种加工条件下获得起泡的珠粒。珠的细胞形态和熔化/结晶行为进行了检查和讨论。

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