Design for product-embedded disassembly pathways

S. Takeuchi, K. Saitou
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引用次数: 2

Abstract

This paper presents a computational method for designing an assembly with multiple built-in disassembly pathways, each of which can be activated to retrieve certain components. It is motivated by the global sales of consumer products whose optimal end-of-life options vary geographically due to local recycling/reuse infrastructures and regulatory requirements. Given the sets of components to be retrieved at each location, the method simultaneously determines the spatial configurations of components and locator features, such that each set of desired components is retrieved via a domino-like "self-disassembly" process triggered by the removal of a fastener. A multi-objective generic algorithm is utilized to search for Pareto-optimal designs in terms of the realization of the desired disassembly pathways, the satisfaction of distance specifications among components, the minimization of disassembly cost at each location, and the efficient use of on-component locator features. A case study demonstrates the feasibility of the method.
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产品嵌入式拆卸路径的设计
本文提出了一种设计具有多个内置拆卸路径的装配体的计算方法,其中每个拆卸路径都可以被激活以检索某些部件。它的动机是消费品的全球销售,由于当地的回收/再利用基础设施和监管要求,这些产品的最佳报废选择在地理上有所不同。给定要在每个位置检索的组件集,该方法同时确定组件的空间配置和定位器特征,以便通过拆除紧固件触发的多米诺骨牌式“自拆卸”过程检索所需的每组组件。采用多目标泛型算法,从实现所需拆卸路径、满足部件间距离规范、各位置拆卸成本最小以及部件定位器特征的有效利用等方面寻求pareto最优设计。实例分析验证了该方法的可行性。
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