Lin Chao-Ming, Hung Yu-Tung, Tan Chung-Ming
Department of Mechanical and Energy Engineering, National Chiayi University, Chiayi 60004, Taiwan.
Department of Mechanical Engineering, WuFeng University, Chiayi 62153, Taiwan.
Polymers (Basel). 2021 Mar 11;13(6):865. doi: 10.3390/polym13060865.
Artificial knee joints play a critical role in improving the quality of life of the elderly and those with knee injuries. Such knee joints are fabricated using a composite material consisting of metal alloy particles and polymer resin and are generally produced using the metal powder injection molding (MIM) process. However, if the local powder concentration of the molded product is too low, the mechanical properties and aesthetic appearance of the joint are severely degraded. Similarly, if the product undergoes excessive shrinkage following removal from the mold, the dimensional accuracy will fail to meet the design specifications. Accordingly, the present study applies a hybrid approach based on the Taguchi robust design methodology and gray relation analysis (GRA) theory to determine the optimal MIM processing conditions that simultaneously maximize the powder concentration uniformity while minimizing the volume shrinkage. The feasibility of the proposed approach is demonstrated by means of CAE (Computer Aided Engineering) mold flow simulations. The results show that while the robust Taguchi design method enables the optimal processing parameters that maximize the powder concentration uniformity and minimize the volume shrinkage to be individually determined, the hybrid Taguchi-GRA method enables both quality measures to be optimized simultaneously.
人工膝关节在改善老年人和膝关节损伤患者的生活质量方面发挥着关键作用。这种膝关节是使用由金属合金颗粒和聚合物树脂组成的复合材料制造的,并且通常采用金属粉末注射成型(MIM)工艺生产。然而,如果成型产品的局部粉末浓度过低,关节的机械性能和美观度将严重下降。同样,如果产品从模具中取出后收缩过度,尺寸精度将无法满足设计规格。因此,本研究应用基于田口稳健设计方法和灰色关联分析(GRA)理论的混合方法,以确定最佳的MIM加工条件,同时最大限度地提高粉末浓度均匀性,最小化体积收缩。通过计算机辅助工程(CAE)模具流动模拟证明了所提方法的可行性。结果表明,虽然稳健的田口设计方法能够分别确定使粉末浓度均匀性最大化和体积收缩最小化的最佳加工参数,但田口 - GRA混合方法能够同时优化这两个质量指标。