Numerical Simulation of Injection/Compression Molding

T. J. Wang
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Abstract

Injection/compression molding (ICM) is often referred to as coining, stamping, compressive-fill, or hybrid molding. It can produce parts with more homogeneous properties and less molded-in stresses, and this may not be possible with conventional injection molding. It can also produce extremely thin or large parts which may require larger machine if conventional injection molding were used. A CAE software has been developed to simulate the ICM process. Two areas will be emphasized to show the advantage of the ICM process over the conventional injection molding process. One is the opening of the mold halves during the molding process allows resin flow to proceed to the extremities of the cavity more easily and consequently reduces the injection pressure and clamping force. Process window design will be discussed. The other is the packing due to the compression motion requires less pressure gradient, i.e., more effective packing. It results in more uniform and smaller pressure throughout the entire cavity. This is essential to produce parts with low residual stress such as compact disk and lens.
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注射/压缩成型的数值模拟
注射/压缩成型(ICM)通常被称为压模、冲压、压缩填充或混合成型。它可以生产具有更均匀的性能和更少的模内应力的零件,这可能是不可能与传统的注射成型。它也可以生产非常薄或大的零件,如果使用传统的注射成型,可能需要更大的机器。开发了一个CAE软件来模拟ICM过程。将强调两个方面,以显示ICM工艺优于传统注塑工艺的优势。一是在成型过程中打开模具一半,允许树脂流更容易地进入腔体的末端,从而降低注射压力和夹紧力。过程窗口设计将被讨论。另一种是填料由于压缩运动所需的压力梯度较小,即填料更有效。它的结果是在整个腔内更均匀和更小的压力。这对于生产低残余应力的零件,如光盘和透镜是必不可少的。
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