模具
造型(装饰)
田口方法
材料科学
实验设计
析因实验
机械工程
复合材料
计算机辅助工程
正交数组
注塑机
响应面法
流量(数学)
工程制图
工程类
计算机科学
数学
机器学习
几何学
统计
作者
Dyi‐Cheng Chen,Rih-Sheng Yang,Shang-Wei Lu,Hong-Yao Guo
出处
期刊:Transactions of The Canadian Society for Mechanical Engineering
[Canadian Science Publishing]
日期:2022-11-18
卷期号:47 (1): 15-25
被引量:3
标识
DOI:10.1139/tcsme-2022-0048
摘要
This study employed the Taguchi method, analysis of variance, and response surface methodology for plastic gear rack injection molding parameters followed by a factorial quality validation. This study was expected to reduce the time cost of mold design and injection molding by making different combinations of the molding parameters, designing an experimental method, and performing the data simulation experiment by computer-aided engineering (CAE). With the research tool of polymer (polyacetal) for plastic material, computer-aided design mold design, and CAE mold flow analysis software, a numerical analysis of plastic molding flow was conducted. Taguchi L 16 (4 5 ) orthogonal array designed 16 experimental combinations including injection molding conditions of filling time, holding pressure, holding time, plastic temperature, and mold temperature. The experimental results of molding analysis of software (Moldex3D) determined the optimum molding essentials of plastic injection: filling time 0.2 s, holding pressure 98 MPa, plastic temperature 195 °C, and mold temperature 65 °C. In this study, the parameters of the response surface method were used for the actual injection verification. The CAE simulation software can greatly improve the mold design and injection molding parameter testing time to enhance the overall working efficiency and cost control.
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