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Uniform Design and Kriging Surrogate Modeling in Improvement of Warpage and Ejection Time of an Injection Molded Plastic Spur Gear

机译:均匀设计和克里格替代模型改进注塑成型塑料齿轮翘曲的翘曲和喷射时间

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This paper aims to present the application of uniform design of experiments, mold flow analysis, Kriging surrogate modeling, and optimization algorithms to the improvement of warpage and ejection time of an injection molded plastic spur gear. Firstly, uniform design method is applied to build a set of experiments. Secondly, for each experiment, simulation software Moldflow is employed to analyze the warpage distribution and ejection time of the plastic spur gear. Thirdly, Kriging surrogate modeling method is applied to construct the maximum warpage and ejection time surrogate models. Fourthly, a genetic algorithm and a sequential quadratic programming algorithm are used to solve the optimal solutions of parameters minimizing the maximum warpage surrogate model. Finally, a verification experiment is executed in Moldflow to ensure that the optimal solutions determined via surrogate model can act as near-optimal solutions to the real problem.
机译:本文旨在展示均匀设计实验,模具流量分析,克里格替代建模和优化算法的应用,改善注塑塑料正齿轮的翘曲和喷射时间。首先,应用统一的设计方法来构建一组实验。其次,对于每个实验,采用仿真软件模型来分析塑料正齿轮的翘曲分布和喷射时间。第三,应用Kriging代理建模方法来构建最大翘曲和喷射时间代理模型。第四,遗传算法和顺序二次编程算法用于解决最小化最大翘曲代理模型的参数的最佳解决方案。最后,在Moldflow中执行验证实验,以确保通过代理模型确定的最佳解决方案可以充当真实问题的近最佳解决方案。

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