Multi-piece Mold Design Based on Linear Mixed-Integer Program toward Guaranteed Optimality

S. Stoyan, Yong Chen
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引用次数: 3

Abstract

Multi-piece molds are a type of molding technology, which consist of more than two mold pieces and are assembled/dissembled like a space puzzle. Based on such molds, complex parts can be made for limited run production. Compared to traditional two-piece molds, parts with much more complex geometries can be made, however, this also brings challenge in designing such multi-piece molds. Previous works to address the problem are all based on heuristics. In this paper, we present a multi-piece mold design framework based on linear mixed integer program. In our method, multi-piece mold design with guaranteed optimality on the number of mold pieces can be generated for any given CAD model of a molded part. The formulation of multi-piece mold design as a linear mixed-integer program is presented. The related multi-piece mold design framework is discussed. Some examples are provided which illustrate the effectiveness and efficiency of our approach.
基于保证最优线性混合整数规划的多件模具设计
多片式模具是一种成型技术,它由两个以上的模具组成,像空间拼图一样组装/拆卸。基于这样的模具,复杂的零件可以制造有限的运行生产。与传统的两片式模具相比,可以制造出几何形状复杂得多的零件,但这也给多片式模具的设计带来了挑战。以前解决这个问题的工作都是基于启发式的。本文提出了一种基于线性混合整数程序的多片式模具设计框架。在我们的方法中,可以对任何给定的成型零件的CAD模型生成保证最优模件数的多件模具设计。提出了多件式模具设计的线性混合整数程序。讨论了相关的多片式模具设计框架。举例说明了该方法的有效性和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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