Numerical and Experimental Studies on the Demolding of Injection Molding Parts

Hao Wang, K. Kabanemi, G. Salloum
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引用次数: 1

Abstract

Numerical and experimental studies are conducted on the demolding stage of injection molding process. Based on an integrated computer-aided-engineering software package, a numerical approach has been proposed to predict the ejection force and to analyze the layout of ejector pins. The predictions are validated in this work by injection molding of polycarbonate boxes. The boxes are molded at given processing condition while ejected with different layouts of ejector pins. The ejection force is measured by load transducers installed behind the ejector pins. The shrinkage of the boxes is also measured by displacement transducers. It is found that the measured total ejection force and its distribution over the pin layouts compare reasonably well with numerical predictions. The validation is also supported by the agreement between the predicted and measured warpage of the boxes. Additional results are provided for a complex molding geometry for which the mold opening and ejection operations need to be considered in studying the demolding.
注射成型零件脱模的数值与实验研究
对注射成型过程的脱模阶段进行了数值和实验研究。基于集成的计算机辅助工程软件包,提出了一种预测弹射力和分析弹射销布置的数值方法。通过对聚碳酸酯箱体的注塑成型,验证了预测结果。盒子在给定的加工条件下成型,同时用不同的顶销布局弹出。弹射力由安装在弹射针后面的负载传感器测量。箱子的收缩率也由位移传感器测量。结果表明,测得的总弹射力及其分布与数值预测结果相当吻合。预测和测量的盒子翘曲之间的一致性也支持验证。在研究脱模时需要考虑开模和顶模操作的复杂成型几何形状提供了额外的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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