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Warpage Analysis with Straight Drilled and Conformal Cooling Channels on Front Panel Housing by using Taguchi Method

机译:通过使用TAGUCHI方法在前面板外壳上具有直钻和保形冷却通道的翘曲分析

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The challenging in injection molding process is to get the uniform thermal distribution on the molded parts during the cooling stage which is mainly depend on the design of the cooling channels in injection mold. Poor design of cooling channels will result a non-uniform thermal ilistribution which lead to a longer cycle time, differential shrinkage and warpage defects on the molded parts. Tn this study, the performance of conformal cooling channels compared to the straight drilled cooling channels in order to minimize the warpage on the front panel housing is evaluated. The simulation results from Autodesk Moldflow Insight (AMI) 2013 are analyzed by using Taguchi Method and Analysis of Variance (ANOVA). The analyses show that conformal cooling channels are able to improve the quality of the molded parts in term of warpage compared to the conventional straight drilled cooling channels and the results are beneficial for the molding industries which involving the precise parts.
机译:注塑过程中的具有挑战性是在冷却阶段期间在模制部件上获得均匀的热分布,这主要取决于注塑模具中的冷却通道的设计。冷却通道的设计不佳将导致非均匀的热解吸,这导致模塑部件上的循环时间,差分收缩和翘曲缺陷。本研究中,与直钻冷却通道相比,共形冷却通道的性能,以便在最小化前面板壳体上的翘曲。通过使用Taguchi方法和方差分析(ANOVA)分析Autodesk Moldflow Insight(AMI)2013的仿真结果。分析表明,与传统的直钻冷却通道相比,共形冷却通道能够改善翘曲期限内的模塑部件的质量,并且结果对涉及精确部件的模塑行业有益。

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