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Functional tolerancing and testing increase microassembly yield

机译:功能公差和测试增加了微型装配率

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Tolerance allocation is a critical issue in precision engineering and in microassembly. Generally, manufacturing components within the required tolerances is hard because of the high precision necessary to satisfy the product function. In this paper, a case study shows that tightening component tolerances doesn''t always increase the yield. An efficient control strategy is a better approach to ensure the product functions and to increase the number of conforming products. The proposed control strategy is based on sampling tests to control the assembly process, and on a full batch test to guarantee the functions of the assembled product. The redesign of a micro product control strategy illustrates the interest of multiphysic functional tolerancing and testing in precision engineering.
机译:公差分配是精密工程和微包装中的一个关键问题。通常,由于满足产品功能所需的高精度,通常,所需公差内的制造部件很难。在本文中,案例研究表明,紧固组分公差并不总是增加产量。有效的控制策略是一种更好的方法,可以确保产品功能并增加符合产品的数量。所提出的控制策略基于采样测试来控制组装过程,并在全批量测试上保证组装产品的功能。微型产品控制策略的重新设计说明了在精密工程中的多体功能公差和测试的兴趣。

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