Optimization of the Cooling of a Thermoplastic Injection Mold

Q4 Engineering
A. Chaabene, S. Chatti, M. Ben Slama
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引用次数: 2

Abstract

In injection molding processes for thermoplastic parts, the polymer solidification phase in the molding cavity has a strong influence on the quality of the shaped parts and also on the process cycle time. Reducing cycle time is one of the major concerns for plastic injection industries. As cooling phase presents the most critical phase to get quality and cycle time of the part, the application of additive manufacturing (AM) technologies has been overcoming the limitations of traditional cooling system design. AM enables the construction of conformal cooling channels for higher cooling uniformity due to its almost unlimited freedom of design that can fulfil the desired functions in injection molding process equipment. The analysis of the heat transfer during the phase of cooling allows the investigation of the optimal positioning of the cold sources and their intensities. In this paper, a systematic approach is used to replace conventional channels in an injection molding tool with conformal cooling channels. A simulation is used to develop a numerical model that describes the heat transfer and predicts the cycle time of both the optimal and conventional designs. Finally, a numerical comparison is made between traditional and conformal cooling to demonstrate the beneficial effect on reducing the manufacturing cycle and enhancing part quality.
热塑性注射模冷却的优化
在热塑性零件的注射成型工艺中,聚合物在成型腔内的凝固阶段对成型零件的质量和工艺周期有很大的影响。缩短循环时间是塑料注射行业关注的主要问题之一。由于冷却阶段是获得零件质量和周期时间的最关键阶段,增材制造技术的应用已经克服了传统冷却系统设计的局限性。增材制造由于其几乎无限的设计自由,可以实现注塑工艺设备所需的功能,因此可以构建保形冷却通道,以获得更高的冷却均匀性。在冷却阶段的传热分析允许研究冷源及其强度的最佳定位。本文采用了一种系统的方法,用保形冷却通道代替注塑模具中的传统通道。通过模拟建立了一个描述传热的数值模型,并预测了优化设计和常规设计的循环时间。最后,对传统冷却和保形冷却进行了数值比较,证明了保形冷却对缩短制造周期和提高零件质量的有益作用。
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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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
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