Multi-Objective Optimization of Injection Molding Parameters for Manufacturing Thin-Walled Composite Connector Terminals

Materials Pub Date : 2024-08-08 DOI:10.3390/ma17163949
Mingbo Tan, Size Peng, Yingfei Huo, Maojun Li
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Abstract

The rapid development of new energy vehicles demands significant improvements in connector structures and performance standards. Wire harness connectors, crucial for linking various electrical components, face challenges due to their small size and thin-walled structure, which can lead to dimensional shrinkage and warping during injection molding. To address these issues, this study optimizes the injection molding process by fine-tuning parameters such as melt temperature, mold temperature, injection time, holding pressure/time, and cooling time. By integrating the Taguchi method with grey relational analysis, the study enhances the molding process for thin-walled composite connectors. This combined approach provides a comprehensive framework for optimizing multiple quality objectives and improving the overall performance of injection-molded composite components.
多目标优化制造薄壁复合材料连接器端子的注塑成型参数
新能源汽车的快速发展要求连接器的结构和性能标准有重大改进。线束连接器是连接各种电气元件的关键,但由于其体积小、结构薄,在注塑成型过程中可能会导致尺寸收缩和翘曲,因此面临着诸多挑战。为解决这些问题,本研究通过微调熔体温度、模具温度、注塑时间、保压/时间和冷却时间等参数来优化注塑成型工艺。通过将田口方法与灰色关系分析相结合,本研究改进了薄壁复合材料连接器的成型工艺。这种综合方法为优化多个质量目标和提高注塑成型复合材料部件的整体性能提供了一个全面的框架。
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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