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Integration of disassembly leveling and bin assignment for demanufacturing automation

机译:集成了拆装水准仪和料斗分配功能,以实现自动化制造

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摘要

As an integral part of a product life cycle, demanufacturing is a process of disassembling a product and assigning collection bins for the resultant subassemblies and parts, which are then reused, remanufactured, reengineered, or disposed of. This paper proposes an algorithm to determine disassembly levels and bins in an integrated way to maximize the profit from a used product through balancing the resource invested in disassembly processes, the return, and the environmental impact caused by them. The algorithm utilizes the information from a computer-aided design system and requires minimal user input with the computational complexity of O(n/sup 2/+mn), where n is the number of parts and final subassemblies in a product, and m is the number of collection bins. It has been successfully used in the development of a demanufacturing stage of a multi-life cycle assessment and analysis tool. The benefit of the proposed algorithm is illustrated through a laptop computer example.
机译:作为产品生命周期不可或缺的一部分,去制造是拆卸产品并为最终子组件和零件分配收集箱的过程,然后将这些子箱和零件重新使用,重新制造,重新设计或处置。本文提出了一种算法,该算法以综合的方式确定拆解级别和垃圾箱,以通过平衡在拆解过程中投入的资源,回收率以及由此造成的环境影响,最大化使用过的产品的利润。该算法利用了来自计算机辅助设计系统的信息,并且需要最少的用户输入,并且计算复杂度为O(n / sup 2 / + mn),其中n是产品中零件和最终组件的数量,m是收集箱的数量。它已成功用于开发多生命周期评估和分析工具的再制造阶段。通过便携式计算机示例说明了所提出算法的好处。

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