...
首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Investigation of the mold-filling phenomenon in high-pressure foam injection molding and its effects on the cellular structure in expanded foams
【24h】

Investigation of the mold-filling phenomenon in high-pressure foam injection molding and its effects on the cellular structure in expanded foams

机译:高压泡沫注射成型中模具填充现象的研究及其对膨胀泡沫细胞结构的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Mold filling plays a crucial role in determining the cells' structural morphology and uniformity in high-pressure foam injection molding. This process affects the formation, deformation, and dissolution of premature cells, which nucleate in the melt/gas mixture during the mold filling. We investigated the mold-filling phenomena and the cell structure development in the high-pressure foam injection molding process with mold opening. Polystyrene was used as the matrix, and carbon dioxide and nitrogen were used as physical blowing agents. We adopted an in-situ visualization technique, which enabled us to monitor and study the formation and evolution of the cells during the mold-filling and melt-packing phases. It was found that both the shape and the size of cells, which had nucleated during the mold filling process inside the melt, were changed by the packing condition selected. Statistical analyses have shown that the packing pressure and its duration were the most influential parameters affecting the size and the shape of cells that had nucleated in the melt before the mold opening. A greater packing pressure and a longer packing time resulted in a smaller cell size with a larger deformation in the melt during mold filling. A proper packing condition eventually removed all of the cells and re-dissolved them back into the melt before mold opening. The effect of the mold-filling parameters on the final cellular structure was also investigated, using carbon dioxide and nitrogen as physical blowing agents. A complete dissolution of the premature cells during the mold-filling and packing phases resulted in a more uniform and finer cellular structure after mold opening. The obtained results and the developed knowledge provide a deeper insight into the fundamental aspects of cellular structure development in foam injection molding process, which can be used to produce highly expanded, ultra-light foams with uniform cell structure.
机译:模具填充在确定在高压发泡注射成型该单元的结构形态和均匀性的关键作用。这个过程会影响形成,变形,和过早的细胞,其中所述模具填充期间成核在熔体/气体混合物的溶解。我们研究了模具填充现象和在与模具打开高压发泡注射成型过程中的单元结构的发展。聚苯乙烯被用作基质,和二氧化碳和氮气被用作物理发泡剂。我们通过原位可视化技术,这使我们在模具填充期间监测和研究细胞的形成和演变和熔融包装阶段。结果发现,两个形状和细胞,其已经在熔融内的模具填充过程核的大小,是由所选择的填料的条件改变。统计分析显示,保压压力和它的持续时间是影响大小和已经在熔体模具打开之前有核细胞的形状最有影响的参数。更大的填密压力和较长的保压时间导致具有模具填充期间在熔融更大的变形更小的小区尺寸。一个适当的包装条件最终要去除所有的单元和再溶解它们放回模具打开之前熔融。对最终的蜂窝结构中的模具填充参数的影响也进行了研究,使用二氧化碳和氮气作为物理发泡剂。模具填充和包装阶段期间过早的细胞的完全溶解导致模具打开后的更均匀,微细多孔结构。将所得到的结果和发达知识提供更深入了解细胞结构发展的发泡注射成型过程中的基本方面,其可以被用于生产高度膨胀,具有均匀的泡孔结构的超轻泡沫。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号