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Multi-Objective Optimization of Injection Molding Process for Determination of Feasible Moldability Index

机译:确定可行成型指标的注塑工艺多目标优化

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A multi-objective optimization of injection molding for determination of feasible moldability index was investigated in this study. The feasible moldability indices were calculated by implementing Taguchi method and Fuzzy Analytic Hierarchy Process with the order performance by its similarity to the ideal solution technique. Major process parameters of the injection molding like melt temperature, gate design, filling and cooling times were selected as variables to minimize common manufacturing defects like shrinkage, warpage and short shot. The analytic hierarchy process was used to set initial weights of variables and seriousness of each defect was evaluated by fuzzy decision-making process. Finite Element Analysis of the injection molding process was performed for selected work piece using polypropylene material. Results showed that it is more convenient to calculate several sets of variable parameters with high moldability indices, rather than focusing on single configuration with the highest moldability index. It is clear that the combination of Taguchi with TOPSIS and FAHP gives more applicable alternatives with high moldability indices, if the solution with highest moldability index in not practical.
机译:为了确定可行的成型性指标,对注塑成型的多目标优化进行了研究。通过实施Taguchi方法和模糊层次分析法,通过与理想求解技术的相似性,计算了可行的成型指标。选择注塑成型的主要工艺参数(例如熔体温度,浇口设计,填充和冷却时间)作为变量,以最大程度地减少常见的制造缺陷,例如收缩,翘曲和短射。层次分析法用于设置变量的初始权重,并通过模糊决策过程评估每个缺陷的严重性。使用聚丙烯材料对选定的工件进行了注塑工艺的有限元分析。结果表明,与专注于具有最高可塑性指标的单一配置相比,计算具有高可塑性指标的几组可变参数更为方便。显然,如果具有最高成型性指标的解决方案不切实际,那么Taguchi与TOPSIS和FAHP的结合将提供具有较高成型性指标的更适用替代方案。

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