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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Design of U-shape milled groove conformal cooling channels for plastic injection mold
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Design of U-shape milled groove conformal cooling channels for plastic injection mold

机译:注塑模具U形铣槽保形冷却通道的设计

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摘要

Besides the solid free-form fabrication technology, milling operation is an alternative applicable method to make complex cooling channels conform to the surface of the mold cavity. This paper presents the U-shape milled groove conformal cooling channels and proposes the design optimization process in order to obtain an optimal cooling channels’ configuration and target mold temperature. The relation between the cycle averaged thermal behavior of the mold cavity and the two-dimensional configuration of cooling channels was first investigated thoroughly by an analytical method. Design of experiment and 2D simulation were done to obtain the mold wall temperature and to check the feasibility of the analytical method. The optimization process of the free-form conformal cooling channels is based on the combination of both analytical method and 3D CAE simulation. The analytical step relies on explicit mathematic formulas, so it can approach the neighboring optimal solution quickly. Subsequently, the three-dimensional heat transfer simulation is applied to fine-tune the optimization results. A case study for a plastic car fender was investigated to verify the feasibility of the proposed method. The results show that conformal cooling channel gives a uniform cooling, reducing the cooling time and increasing the molded part’s quality with less effort of plastic designers and high computational efficiency.
机译:除了固态自由形式的制造技术外,铣削操作是使复杂的冷却通道与型腔表面相符的另一种适用方法。本文介绍了U形铣槽共形冷却通道,并提出了设计优化过程,以获得最佳的冷却通道配置和目标模具温度。首先通过分析方法彻底研究了模腔的循环平均热行为与冷却通道的二维结构之间的关系。进行了实验设计和二维模拟,以获取模具壁温,并验证了该分析方法的可行性。自由形共形冷却通道的优化过程是基于分析方法和3D CAE仿真的结合。分析步骤依赖于显式数学公式,因此它可以快速解决邻近的最优解。随后,应用三维传热模拟对优化结果进行微调。以塑料挡泥板为例进行了研究,以验证该方法的可行性。结果表明,保形冷却通道可提供均匀的冷却效果,从而减少了冷却时间,并提高了成型零件的质量,而塑料设计人员的工作量却更少,计算效率更高。

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