Lin Chao-Ming, Wu Jhih-Jyun, 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). 2020 Nov 10;12(11):2635. doi: 10.3390/polym12112635.
Metal injection molding (MIM) utilizes a compound consisting of metal powder particles and a binding agent as the feedstock material. The present study combines MIM mold flow simulations with the Taguchi method to clarify the individual and combined effects of the main MIM process parameters on the metal powder concentration distribution in the final sintered product. The results show that the molding process should be performed using a short filling time, a high melt temperature, a low packing pressure, a low mold temperature, and a small gate size. Given these process settings, the powder concentration uniformity and phase separation effect are significantly improved; giving rise to a better aesthetic appearance of the final sintered product and an enhanced mechanical strength.
金属注射成型(MIM)使用由金属粉末颗粒和粘结剂组成的化合物作为原料。本研究将MIM模具流动模拟与田口方法相结合,以阐明主要MIM工艺参数对最终烧结产品中金属粉末浓度分布的单独和综合影响。结果表明,成型过程应采用短填充时间、高熔体温度、低保压压力、低模具温度和小浇口尺寸。在这些工艺设置下,粉末浓度均匀性和相分离效果得到显著改善;使最终烧结产品具有更好的美观外观和更高的机械强度。