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MANUFACTURABILITY ANALYSIS OF MULTI-MATERIAL OBJECTS MOLDED BY ROTARY PLATEN MULTI-SHOT MOLDING PROCESS

机译:旋转压板模制工艺模制的多材料物体的可制造性分析

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This paper describes a systematic approach for manufacturability analysis of multi-material objects molded using rotary platen multi-shot injection molding process. In this paper we first identify potential manufacturability problems that are associated with objects molded by the rotary platen process. Identified problems include infeasibility of molding sequences, unnecessary mold complexity, undesired friction during mold opening and closing, and undesired material flash on finished faces. These problems are unique to multi-material molding and do not occur in traditional injection molding. For each of the above four potential manufacturability problems, this paper also describes geometric algorithms for detecting the potential occurrence of the problem based on the object and mold design, finding its causes, and offering appropriate redesign suggestions. We expect that these algorithms will help in decreasing the product development time and improving the product quality for molded multi-material objects.
机译:本文介绍了使用旋转压板多滴注射成型工艺模制的多材料物体可制造性分析的系统方法。在本文中,我们首先识别与由旋转压板工艺模制的物体相关的潜在可制造性问题。所确定的问题包括成型序列的不可行,不必要的模具复杂性,在模具开闭期间的不期望的摩擦,并且在成品面上闪烁不希望的材料。这些问题是多材料成型独特的,并且在传统的注射成型中不会发生。对于上述四个潜在的制造性问题,本文还描述了用于检测基于物体和模具设计的问题的几何算法,找到其原因,并提供适当的重新设计建议。我们预计这些算法将有助于降低产品开发时间并提高模塑多材料物体的产品质量。

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