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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >A Warpage Optimization Method for Injection Molding Using Artificial Neural Network Combined Weighted Expected Improvement
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A Warpage Optimization Method for Injection Molding Using Artificial Neural Network Combined Weighted Expected Improvement

机译:人工神经网络结合加权期望改进的注塑成型翘曲优化方法

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A surrogate-based warpage optimization for injection molding is proposed in this study. The optimization process aims at minimizing the warpage of the injection molding parts in which process parameters, i. e., the mold temperature, melt temperature, injection time, packing time, packing pressure, and cooling time are the design variables. The warpage values are reduced by optimizing the process parameters. A new optimization iteration scheme based on artificial neural network (ANN) combined weighted expected improvement (WEI) is employed to speed up the optimization process and to ensure very rapid and steady convergence. The ANN is used to build an surrogate warpage function for the process parameters, replacing the expensive simulation analysis in the optimization iterations. The adaptive process is executed by the WEI function, which is an infilling sampling criterion. Although the design of experiment (DOE) size is small, this criterion can precisely balance the local and global search and tend to find the global optimal design. As examples, a TV cover and a scanner are investigated. The results show that the proposed approach can effectively reduce the warpage of the injection molding parts.
机译:这项研究提出了一种基于替代的注塑成型翘曲优化方法。优化过程旨在最小化其中工艺参数(即,加工参数)的注塑部件的翘曲。例如,模具温度,熔体温度,注射时间,保压时间,保压压力和冷却时间是设计变量。通过优化工艺参数来降低翘曲值。一种新的基于人工神经网络(ANN)结合加权期望改进(WEI)的优化迭代方案可加快优化过程并确保非常快速和稳定的收敛。 ANN用于为工艺参数构建替代翘曲函数,从而替代了优化迭代中昂贵的仿真分析。自适应过程由WEI功能执行,这是一种填充采样标准。尽管实验设计(DOE)的规模很小,但该标准可以精确地平衡本地搜索和全局搜索,并倾向于找到全局最优设计。例如,研究了电视罩和扫描仪。结果表明,该方法可以有效减少注塑件的翘曲。

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