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Multi Responses Optimization of Plastic Injection Molding for Biodegradable Polymers Using Taguchi Method and TOPSIS

机译:使用Taguchi方法和Topsis对可生物降解聚合物的塑料注射成型的多重反应优化

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This study reports a simulation study to reduce the shrinkage and warpage of Poly Lactic Acid (PLA) by optimizing the injection molding parameters using the Taguchi-TOPSIS method. Solidwork software were used to creating a specimen modelling of car accessories (shark fin antenna) and then employing the infinite element software, Autodesk MoldFlow Adviser. The effect of injection parameters on the warpage and shrinkage of specimen were examined carefully. The simulation result shows that Taguchi-TOPSIS method provided an outstanding result for the optimization of injection parameters to produce minimum volumetric shrinkage. Orthogonal array design was using L9 of design experiment. The injection parameter of melt temperature was the most significant parameter that influences the warpage and volumetric shrinkage for car accessories (shark fin antenna). The results of this study indicated that the optimal level combination to get minimum shrinkage and warpage in the injection molding process are 25°C of mold temperature, 148°C of melt temperature, 0.7 s of injection time, and 8 s of cooling time. The optimum value of warpage and volumetric shrinkage rate are 0.9949 mm and 4.14%.
机译:本研究报告了一种模拟研究,通过使用TAGUCHI-TOPSIS方法优化注塑参数来减少聚乳酸(PLA)的收缩和翘曲。 SolidWork软件用于创建汽车配件的标本建模(鲨鱼鳍天线),然后采用无限元软件,Autodesk Moldflow顾问。仔细检查注射参数对翘曲和标本收缩的影响。仿真结果表明,Taguchi-Topsis方法提供了优化注射参数以产生最小体积收缩的结果。正交阵列设计使用L9设计实验。熔融温度的注入参数是影响汽车配件(鲨鱼鳍天线)的翘曲和体积收缩的最重要参数。本研究的结果表明,在注塑过程中获得最小收缩和翘曲的最佳水平组合是25°C的模具温度,148℃的熔体温度,注射时间0.7秒,冷却时间为8秒。翘曲和体积收缩率的最佳值为0.9949 mm和4.14%。

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