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RESEARCH ARTICLE Optimal process design in selective assembly when components with smaller variance are manufactured at three shifted means

机译:研究文章当通过三个移位的方式制造偏差较小的组件时,选择性组装中的最佳工艺设计

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摘要

Selective assembly is an effective approach for improving the quality of a product that is composed of two mating components, when the quality characteristic of the product is the clearance between the mating components. In this approach, the components are sorted into several groups according to their dimensions, and the product is assembled by randomly selecting mating components from corresponding groups. A number of previous studies focused on equal width partitioning schemes, in which the dimensional distributions of the two components are partitioned so that all groups have equal widths. When there is a large difference between the variances of the two component dimensions, equal width partitioning will result in a large number of surplus components due to differences between the numbers of components in corresponding groups. Some authors have proposed a method of manufacturing the component with smaller variance at three shifted means to cope with this difficulty. In the present paper, an optimal manufacturing mean design that minimises the number of surplus components is derived. It is shown that the use of the optimal design considerably reduces the number of surplus components compared with using another previously proposed manufacturing mean design and the no-shift design.
机译:当产品的质量特征是配合组件之间的间隙时,选择性组装是一种提高由两个配合组件组成的产品质量的有效方法。在这种方法中,根据组件的尺寸将它们分为几组,然后通过从相应的组中随机选择配对的组件来组装产品。先前的许多研究都集中在等宽分割方案上,在该方案中,对两个分量的尺寸分布进行了分割,以使所有组具有相同的宽度。当两个组件尺寸的方差之间存在较大差异时,由于相应组中组件数量之间的差异,相等宽度的划分将导致大量剩余组件。一些作者提出了一种通过三种偏移方式来制造方差较小的组件的方法,以解决这一难题。在本文中,得出了一种使多余零件数量最少的最佳制造均值设计。结果表明,与使用其他先前提出的制造均值设计和无班次设计相比,使用最佳设计可以显着减少多余零件的数量。

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