Pulsed cooling control for improving part warpage in injection molding process

T. Do, P. S. Minh
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Abstract

In this study, the mold operation fluid will be controlled for observing the cooling efficiency of conventional cooling and pulsed cooling. The cooling techniques will be compared under varying mold temperature, coolant temperature, melt temperature, and flow rate. A mold structure was built using stainless steel 420. The cavity plate contains two cavities. Each cavity will be used for one type of part thickness. Results show that by appropriately controlling the fluid in pulsed cooling, the cooling rate can be improved from 0.552 °C/s to 0.755 °C/s and the warpage can be reduced by 20%. Moreover, as compared with conventional cooling, pulsed cooling can reduce warpage by 20% because pulsed cooling can maintain a stable heating/cooling temperature history and offer sufficient cooling to reduce warpage.
脉冲冷却控制在注射成型过程中改善零件翘曲
在本研究中,控制模具操作液,观察常规冷却和脉冲冷却的冷却效率。冷却技术将在不同的模具温度、冷却剂温度、熔体温度和流速下进行比较。模具结构采用不锈钢420。空腔板包含两个空腔。每个腔将用于一种类型的零件厚度。结果表明,在脉冲冷却过程中适当控制流体,可将冷却速率从0.552℃/s提高到0.755℃/s,使翘曲量降低20%。此外,与传统冷却相比,脉冲冷却可以减少20%的翘曲,因为脉冲冷却可以保持稳定的加热/冷却温度历史,并提供足够的冷却来减少翘曲。
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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