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Application of Taguchi optimization technique in determining plastic injection molding process parameters for a thin-shell part

机译:Taguchi优化技术在确定薄壳零件注塑工艺参数中的应用

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This paper deals with the application of Taguchi optimization technique to reduce warpage problem related to the shrinkage variation depended on process parameters during production of thin-shell plastic components for orthose part. For this purpose, a number of MoldFlow analyses are carried out by utilizing the combination of process parameters based on three-level of L_(27) and L_9 Taguchi orthogonal design. The signal-to-noise (S/N) and the analysis of variance (ANOVA) are used to find the optimum levels and to indicate the impact of the process parameters on warpage and shrinkage. The results show that warpage and shrinkage are improved by about 2.17% and 0.7%. A verification test is also performed to prove the effectiveness of Taguchi technique after the optimum levels of process parameters are determined. It can be clearly inferred from this conclusion that Taguchi optimization is sufficient to solve the warpage problem with shrinkage for thin-shell plastic components of orthose part.
机译:本文讨论了Taguchi优化技术的应用,以减少与用于零件的薄壳塑料部件生产过程中取决于工艺参数的收缩率变化有关的翘曲问题。为此,利用基于L_(27)和L_9 Taguchi正交设计三级的工艺参数的组合进行了许多MoldFlow分析。信噪比(S / N)和方差分析(ANOVA)用于找到最佳水平,并指示工艺参数对翘曲和收缩的影响。结果表明,翘曲和收缩率分别提高了约2.17%和0.7%。确定了最佳工艺参数水平后,还将进行验证测试以证明田口技术的有效性。从该结论可以清楚地看出,Taguchi优化足以解决带异物零件的薄壳塑料部件收缩的翘曲问题。

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