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Investigations on the impact performance of gas-assisted injection molded polystyrene parts

机译:气辅注塑聚苯乙烯零件的冲击性能研究

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摘要

The effects of geometrical factors, introduced by part thickness and various gas channel designs, including semicircular gas channel and rectangular gas channels with different geometry, on the impact properties of gas-assisted injection molded (GAIM) poly-styrene parts were investigated via impact energy measurement. Test results were also compared with those of conventional injection molded (CIM) parts and plate parts without gas channel. It was found that gas channel design results in part impact reinforcement and gas-assisted injection molded parts show better impact preformance than conventional injection molded parts. Generally speaking, impact strength of GAIM parts increases when the size of the gas channel is increased. Meanwhile, for five gas channel designs, both gas channel designs attached with top rib (shapes D and E) show the higher impact energy and impact value. These two gas channel designs provide the best enhancement effect in impact performance. The present investigation provides a design guideline for choosing the most effective gas channel design to achieve the part impact performance.
机译:通过冲击能研究了零件厚度和各种气体通道设计(包括具有不同几何形状的半圆形气体通道和矩形气体通道)引入的几何因素对气体辅助注射成型(GAIM)聚苯乙烯零件的冲击性能的影响。测量。还将测试结果与传统的注模(CIM)零件和没有气体通道的平板零件进行了比较。已经发现,气体通道设计导致零件抗冲增强,并且气体辅助的注射成型零件显示出比常规注射成型零件更好的冲击性能。一般而言,当气体通道的尺寸增加时,GAIM零件的冲击强度会增加。同时,对于五种气体通道设计,两种附有顶部肋骨(形状D和E)的气体通道设计均显示出更高的冲击能量和冲击值。这两个气体通道设计在冲击性能方面提供了最佳的增强效果。本研究为选择最有效的气体通道设计以实现零件冲击性能提供了设计指南。

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