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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A selective assembly strategy to improve the components' utilization rate with an application to hard disk drives
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A selective assembly strategy to improve the components' utilization rate with an application to hard disk drives

机译:一种选择性组装策略,可通过将应用程序应用于硬盘驱动器来提高组件的利用率

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In this paper, we focus on ways to optimize the manufacturing of products whereby the final product performance is measured by the aggregated performances of its components. Specifically for hard disk drives, the final recording capacity is the aggregate of the components' achievable capacities. As is the case for hard disk drive, a drive normally has a targeted capacity such that if it falls below its target, it will be rejected or downgraded. Similarly, products achieving well above the target will still be sold at the target capacity. At both extremes, it results in loss of profits. Hence, the aim of this paper is to propose a novel selective assembly strategy which can improve profitability by reducing the variation of components in the final product assemblies and achieving the target performance. As our case study, the assembly of hard disk drive (HDD) is used to demonstrate its feasibility in real manufacturing settings. Two theorems, (1) discarding theorem and (2) binning theorem, are formulated to guide the selective assembly strategy. They provide the rules for discarding inferior components before assembly to ensure the quality of the starting population and the rules for selecting matching pairs of components to prevent producing over qualified product. The improvement in component utilization rate over random binning is guaranteed by the two theorems.
机译:在本文中,我们专注于优化产品制造的方法,从而通过其组件的综合性能来衡量最终产品的性能。特别是对于硬盘驱动器,最终记录容量是组件可实现容量的总和。与硬盘驱动器一样,驱动器通常具有目标容量,因此,如果它低于目标容量,则将被拒绝或降级。同样,达到目标的产品仍将以目标产能销售。在两个极端情况下,这都会导致利润损失。因此,本文的目的是提出一种新颖的选择性装配策略,该策略可以通过减少最终产品装配中的零件变化并实现目标性能来提高盈利能力。作为我们的案例研究,硬盘驱动器(HDD)的组装用于证明其在实际制造环境中的可行性。制定了两个定理(1)丢弃定理和(2)分箱定理,以指导选择性装配策略。它们提供了在组装之前丢弃劣质组件的规则,以确保起始数量的质量,以及为匹配的组件对选择规则的规则,以防止生产出合格的产品。两个定理保证了相对于随机装仓的组件利用率的提高。

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