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A simple method for forecast of cooling time of high-density polyethylene during gas-assisted injection molding

机译:一种气体辅助注塑过程中高密度聚乙烯冷却时间预测的简单方法

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摘要

Gas-assisted injection molding (GAIM) is an innovative plastic processing technology, which was developed from the conventional injection molding, and has currently found wide industrial applications. About 70 of the whole gas-assisted injection molding cycle is actually occupied by the cooling stage. The quality and production efficiency of molded parts are considerably affected by the cooling stage. Hence, it is necessary to study the solidification behaviors during the cooling stage. In this work, a simple experimental method was designed to simulate the solidification behaviors of high-density polyethylene during cooling stage of GAIM. The enthalpy transformation approach, coupled with the control-volume/finite difference techniques, was adopted to deal with the transient heat transfer problems with phase change effects. In situ measurements of the temperature decreases in the cavity were also carried out. Reasonable agreements between the experimental values and the simulated results such as cooling time, cooling rates, and temperature curves were obtained, which proved that this simple experimental method was effective.
机译:气体辅助注射成型(GAIM)是一种创新的塑料加工技术,它从传统的注射成型发展而来,目前已在工业上得到广泛的应用。整个气体辅助注塑成型周期的70%实际上被冷却阶段占据。成型件的质量和生产效率受冷却阶段的影响很大。因此,有必要研究冷却阶段的凝固行为。本文设计了一种简单的实验方法来模拟高密度聚乙烯在GAIM冷却阶段的凝固行为。采用焓变方法,结合控制体积/有限差分技术,处理具有相变效应的瞬态传热问题。还对空腔中的温度降低进行了原位测量。实验值与冷却时间、冷却速率、温度曲线等仿真结果具有合理的一致性,证明了这种简单的实验方法有效。

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