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Prediction of Operating Loads Contribution to Assembly Relation and Product Behavior

机译:预测操作负载对装配关系和产品行为的贡献

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摘要

In the process of product manufacturing, control of assembly error will directly affect product operating behavior. When product running, operating loads will lead to change of assembly relation of product parts, affecting product behavior. Based on Jacobian-Torsor method, the Jacobian-Torsor tolerance model, considering contribution of operating loads, was extended and corrected, the assembly error (assembly relation change) resulted from operating loads can be calculated. Variation of running behavior with assembly error was divided to three phases: compensation phase, rapid loss phase and total loss phase. Based on changing curve of product behavior, function of behavior loss was constructed to describe behavior loss resulting from assembly error of a part of product. The conception and calculating method of behavior loss index (BLI) are given to reflect behavior changing status of whole product under certain assembly accuracy. Combined with extended Jacobian-Torsor method, the calculated results can be used to predict product behavior change led by operating loads. The prediction can help to know next measurement adopted in product design phase. An example is given to demonstrate calculating procedure of given method.
机译:在产品制造过程中,对组装错误的控制将直接影响产品的运行行为。当产品运行时,操作负载将导致产品零件的装配关系发生变化,从而影响产品性能。基于雅可比-Torsor方法,扩展并修正了雅可比-Torsor公差模型,考虑了操作载荷的贡献,可以计算出由操作载荷引起的装配误差(装配关系改变)。运行行为随装配误差的变化分为三个阶段:补偿阶段,快速损失阶段和总损失阶段。基于产品行为的变化曲线,构造了行为损失函数来描述由于产品零件的装配误差而导致的行为损失。给出了行为损失指数(BLI)的概念和计算方法,以反映在一定的装配精度下整个产品的行为变化状况。结合扩展的Jacobian-Torsor方法,计算结果可用于预测由工作负载导致的产品行为变化。该预测有助于了解产品设计阶段采用的下一个度量。举例说明了该方法的计算过程。

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