首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Reconfigurable fixture locating layout for compliant sheet metal welded assemblies subjected to welding force variations
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Reconfigurable fixture locating layout for compliant sheet metal welded assemblies subjected to welding force variations

机译:可重构的夹具定位布局,用于承受焊接力变化的顺应性钣金焊接组件

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摘要

Reconfigurable sheet metal fixtures are used to assemble sheet metal product families of similar locating layouts. These have to maintain locating and clamping layout fidelity for the entire range of a product family. Locating and clamping regions of a sheet metal part tend to dislocate and distort once subjected to nonequalized resistance spot welding guns. The resulted working regions are different in location and size from the original ones. In this article, Monte Carlo simulations are used by the authors to investigate the expected size and location of the working regions of parts in a sheet metal family subjected to random resistance spot welding forces. In the case study, proposed methodology is applied to an available automobile underbody floor panel family. Resulted working regions after the probabilistic deflection analysis are different from the initial ones both in size and location. The results show that by incorporating the random nonequalized clamping forces, the size of the working regions for fixturing elements is increased. Also, the possibility of designing a fixture that cannot assemble the full range of parts is reduced.
机译:可重新配置的钣金夹具用于组装具有相似定位布局的钣金产品系列。这些必须在整个产品系列中保持定位和夹紧布局的逼真度。一旦受到不合格的电阻点焊枪的影响,钣金零件的定位和夹紧区域往往会发生位移和变形。产生的工作区域的位置和大小与原始区域不同。在本文中,作者使用了蒙特卡洛(Monte Carlo)模拟来研究承受随机电阻点焊力的钣金族中零件的工作区域的预期大小和位置。在案例研究中,所提出的方法论被应用于可用的汽车车身底板地板系列。经过概率挠度分析后得到的工作区域在大小和位置上都与初始区域不同。结果表明,通过结合随机的非均等夹紧力,用于固定元件的工作区域的尺寸增加了。而且,减少了设计不能组装全部零件的固定装置的可能性。

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