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Bulk Density Reduction of Injection Molded Thermoplastic Foams via a Mold Design Approach

机译:通过模具设计方法降低注射成型热塑性泡沫的体积密度

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This study investigates the inter-relationships amongst processing parameters and mold design and their effects on relative density of injection molded foams. The limitation in lowering the overall bulk density of polymeric foams is one of the main drawbacks in injection foaming process. A sheet mold with a rectangular cavity was designed and manufactured which, includes an overflow channel connected with the main cavity via a secondary gate, the size of which was varied in this research. The effects of three parameters including chemical blowing agent weight percentage, gate width, and part thickness on reduction of relative density were investigated. Full factorial test experiments were applied in this research work. The results were used to determine the optimum conditions in terms of low foam bulk density and high cell density. The results showed that enhanced cell structure can be achieved at a larger part thickness and adjusting the secondary gate to an optimum thickness. The conclusions revealed thatpart thickness and secondary gate width were the most influential factors on reduction of relative density and part weight.
机译:这项研究调查了加工参数和模具设计之间的相互关系及其对注塑泡沫相对密度的影响。降低聚合物泡沫的整体堆积密度的限制是注射发泡过程中的主要缺点之一。设计并制造了具有矩形型腔的薄板模具,该模具包括一个通过辅助浇口与主型腔连接的溢流通道,在本研究中,溢流通道的尺寸有所不同。研究了化学发泡剂重量百分比,浇口宽度和零件厚度这三个参数对降低相对密度的影响。充分的阶乘测试实验被应用在这项研究工作中。结果用于确定低泡沫堆积密度和高泡孔密度方面的最佳条件。结果表明,可以在较大的零件厚度下实现增强的单元结构,并将副栅极调节至最佳厚度。结论表明,零件厚度和副浇口宽度是影响相对密度和零件重量降低的最主要因素。

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