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Fastening method selection with simultaneous consideration of product assembly and disassembly from a remanufacturing perspective

机译:从再制造角度同时考虑产品组件和拆卸的紧固方法选择

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摘要

In recent years, remanufacturing has received increased attention as a sustainable and profitable product recovery strategy. To facilitate the remanufacturing of used product returns, factors which affect remanufacturability should be considered during the product design stage. The selection of fastening method during the product design stage is one of the critical decisions which affects the remanufacturability as well as the total cost of disassembly and re-assembly of used products. Hence, both product assembly and disassembly issues should be considered in the product design stage for the selection of fastening methods. Simultaneous consideration of product assembly and disassembly in the product design stage for the fastening method selection has not been properly addressed in previous studies. In this paper, a methodology for selecting appropriate fastening method from a remanufacturing perspective is proposed in which both product assembly and disassembly are addressed. In the proposed methodology, an optimization model is formulated with the objective of minimizing the total cost of product assembly and disassembly. The genetic algorithm is employed to solve the model. A case study on the selection of fastening method for a laptop computer is conducted to illustrate the proposed methodology and to evaluate its effectiveness. The effect of the degree of product disassembly and the demand size for remanufactured products on the total cost of product assembly and disassembly was also investigated. The results showed the proposed methodology provide significant cost savings in the total product assembly and disassembly cost.
机译:近年来,再制造得到了作为可持续和有利可图的产品恢复策略的增加。为了便于使用使用的产品返回的再制造,应在产品设计阶段考虑影响再生性的因素。在产品设计阶段期间的紧固方法的选择是影响再造成性的关键决定之一,也是二手产品的拆卸和重新组装的总成本之一。因此,应在产品设计阶段考虑产品组装和拆卸问题,以选择紧固方法。在先前的研究中,在产品设计阶段的产品设计阶段同时考虑产品组装和拆卸尚未得到适当的研究。本文提出了一种从再制造角度选择适当的紧固方法的方法,其中寻址产品组件和拆卸。在所提出的方法中,优化模型的配方是最小化产品组装和拆卸的总成本。采用遗传算法来解决模型。进行了对膝上型计算机的紧固方法选择的案例研究,以说明所提出的方法和评估其有效性。还研究了产品拆卸程度和需求尺寸对产品组装和拆卸总成本的再制造产品的影响。结果表明,该方法提供了总产品组装和拆卸成本的显着成本。

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