Runner System Design Optimization for Multigated and Multicavity Injection Molds

Xiaoshi Jin
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Abstract

Runner system design for injection molds with multiple gates or multiple cavities often requires iterative analyses for optimized results, because the gate locations or cavity shapes may not be naturally balanced. In addition, in molds with symmetrical layouts, the required injection pressure may be unnecessarily high if the runners are poorly sized. In this paper, a scheme for quickly optimizing runner system design is presented. The objective of design optimization is to minimize the required injection pressure within the design space defined by a given total runner volume. Each runner segment can be given an upper limit and lower limit to define the range of runner cross sectional dimensional size. Application examples are included to demonstrate the effectiveness of the scheme.
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多门多型腔注射模具流道系统设计优化
对于具有多个浇口或多个型腔的注射模具,流道系统设计通常需要反复分析以获得优化结果,因为浇口位置或型腔形状可能不会自然平衡。此外,在对称布局的模具中,如果流道尺寸不合适,所需的注射压力可能会不必要地高。本文提出了一种快速优化转轮系统设计的方案。设计优化的目标是在给定流道总容积所定义的设计空间内,将所需的注入压力最小化。每个流道段可以给定上限值和下限值,以确定流道截面尺寸的范围。应用实例验证了该方案的有效性。
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