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Metrics for diagnosing negative mass and stiffness when uncoupling experimental and analytical substructures

机译:解耦实验和分析子结构时用于诊断负质量和刚度的度量标准

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摘要

When testing to identify an experimental model of a substructure, it is often beneficial to exercise the interface by attaching a fixture such as a rigid mass. An analytical representation of the fixture must then be used to subtract its effects from the assembly. However, this can cause the mass and stiffness matrices to become indefinite in some situations. This paper presents two new metrics that can be used by the analyst to determine the cause of indefinite mass or stiffness matrices after substructure uncoupling. The metrics rank the experimental and fixture modes based upon their contribution to offending negative eigenvalues. Once the troublesome modes have been identified, they can be inspected and often reveal why the mass has become negative. Two examples are presented to demonstrate the metrics and to illustrate the physical phenomena that they reveal.
机译:当进行测试以识别子结构的实验模型时,通过连接固定装置(例如刚性块)来练习界面通常是有益的。然后必须使用夹具的解析表示法从装配中减去其影响。但是,这可能导致质量和刚度矩阵在某些情况下变得不确定。本文介绍了两个新指标,分析人员可以使用它们来确定子结构解耦后质量或刚度矩阵不确定的原因。度量基于实验模式和夹具模式对违背负特征值的贡献进行排序。一旦确定了麻烦的模式,就可以对其进行检查,并经常揭示为什么质量变为负数。给出了两个示例来说明度量标准并说明它们揭示的物理现象。

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