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Computational tools for the optimal design of the injection moulding process

机译:用于优化注塑工艺设计的计算工具

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In the present paper a computer simulation tool, the NASPLAN code, is presented towards the intelligent design of the injection moulding process in complex and multicavity moulds. Furthermore, the NASPLAN code has been coupled with three different numerical optimisation methods in order to design the guidance of melt either by tuning the gates' geometry optimally or by introducing appropriate vacuum at specific areas. This procedure leads to flow balancing and improved part quality by minimising flow-generated defects such as warpage, nonuniform shrinkage, sink marks, etc. Furthermore, the use of vacuum results in faster filling stage with lower injection pressure requirements. Finally, three test cases have been studied to demonstrate the effectiveness and the usefulness of the proposed methods.
机译:在本文中,针对复杂和多腔模具中注塑工艺的智能设计,提出了一种计算机仿真工具NASPLAN代码。此外,NASPLAN代码已与三种不同的数值优化方法结合使用,以便通过优化调整浇口的几何形状或在特定区域引入适当的真空度来设计熔体引导。此过程通过最小化由流动产生的缺陷(例如翘曲,不均匀收缩,缩痕等),可实现流动平衡和改善零件质量。此外,使用真空可实现更快的填充阶段,并降低注射压力。最后,对三个测试案例进行了研究,以证明所提出方法的有效性和实用性。

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