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Product Redesign for Improved Value Recovery via Disassembly Bottleneck Identification and Removal

机译:产品重新设计,以通过拆卸瓶颈识别和拆卸改善价值恢复

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Making progress towards a circular economy requires the reuse of material/components to realize their maximum utility. Integrating end-of-life (EOL) considerations into the design of products will greatly facilitate the recovery of material/components at EOL, and enable their reintroduction into new product life cycles. Past research has largely employed qualitative or single objective oriented approaches for environmental product design. This paper presents a quantitative method for value recovery, in which disassembly bottlenecks are identified and removed by improving upon an existing design. The approach determines the value that can be recovered from EOL products through different EOL options. For a given EOL scenario, major bottlenecks are generally associated with joints, material incompatibility, and product architecture. Once the bottlenecks to rapid, cost effective dismantling of EOL products are identified, different design changes are considered to reduce the time/cost required to recover components/materials. To demonstrate the effectiveness of the method, a hard disk drive is used as a case study.
机译:朝着循环经济取得进展需要重用材料/组件来实现其最大效用。将寿命最终(EOL)考虑集成到产品设计中,将极大地促进EOL的材料/组件的恢复,并使其重新引入新产品寿命周期。过去的研究基本上采用了环境产品设计的定性或单一客观面向的方法。本文呈现了值恢复的定量方法,其中通过改善现有设计来识别和去除拆卸瓶颈。该方法通过不同的EOL选项确定可以从EOL产品恢复的值。对于给定的EOL方案,主要瓶颈通常与关节,材料不相容和产品架构相关联。一旦确定了诸如EOL产品的快速,成本效果拆卸的瓶颈,考虑了不同的设计变化,减少了恢复组件/材料所需的时间/成本。为了证明该方法的有效性,硬盘驱动器被用作案例研究。

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