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Pressure Analysis of Dynamic Injection Molding and Process Parameter Optimization for Reducing Warpage of Injection Molded Products

机译:动态注塑成型压力分析和工艺参数优化以减少注塑成型产品的翘曲

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摘要

Plastic injection molding technology is one of the important technologies for the manufacturing industry. In this paper, a numerical dynamic injection molding technology (DIMT) is presented, which is based on the finite element (FE) method. This numerical simulation method introduces a vibrational force into the conventional injection molding technology (CIMT). Some meaningful work has been executed for investigating the mechanical evolution behavior of DIMT. As the basis for illustrating the mechanism in warpage optimization results, dynamic parameter analysis on the rule of pressure response is performed in detail. In the warpage optimization work, three kinds of structure with different molding materials are selected as the comparison. The final warpage of each product is efficiently minimized by using a Gaussian process-based sequential optimization method. From the further discussions, the features of DIMT in improving the molding quality are revealed, indicating that it may not be appropriate for geometrically large structures. This study has significant meaning for the actual injection molding industry.
机译:注塑成型技术是制造业的重要技术之一。本文提出了一种基于有限元(FE)方法的数值动态注塑技术(DIMT)。这种数值模拟方法将振动力引入了常规注塑技术(CIMT)。已经进行了一些有意义的工作来研究DIMT的机械演化行为。作为说明翘曲优化结果机理的基础,详细进行了压力响应规律的动态参数分析。在翘曲优化工作中,选择了三种具有不同成型材料的结构作为比较。通过使用基于高斯过程的顺序优化方法,可以有效地最小化每个产品的最终翘曲。通过进一步的讨论,揭示了DIMT在改善成型质量方面的特征,表明它可能不适用于几何尺寸较大的结构。这项研究对实际的注塑行业具有重要意义。

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