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Using Strain Gages as References to Calculate Free-Free Frequency Response Functions

机译:使用应变计作为参考计算自由频率响应函数

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The objective of many modal tests to experimentally measure free-free modes is achieved by suspending the test article on soft supports such that the resulting rigid body modes are adequately decoupled in frequency from the flexible body. The soft supports can also be placed at the nodal locations of the primary free-free modes to provide further decoupling. Oftentimes, however, the rigid body modes cannot be separated from the flexible body modes for a variety of reasons, such as the flexible modes being very low in frequency, the test article being so large that it is not cost effective to build a suspension system, or a combination of both. In these cases, the rigid body and flexible modes are intermingled, which means that effort must be spent updating the model of the suspension system instead of the test article itself. Sometimes, one may also want to use the experimentally measured free-free modes directly in an analysis without building an analysis model. This paper proposes a method that uses strain gage measurements at the structure's boundary as references for calculating frequency response functions. The resulting frequency response functions, associated with a free-free structure, can then be used to estimate modes.
机译:通过悬挂在软支撑件上的测试制品,使得所得刚体模式在柔性体的频率上充分地解耦了许多模态测试以进行实验测量自由模式的目的。软载也可以放置在主要无自由模式的节点位置,以提供进一步的去耦。然而,通常,刚性体模式不能出于各种原因与柔性体模式分离,例如柔性模式在频率上非常低,测试制品如此大,即建立悬架系统是不具有成本效益的或两者的组合。在这些情况下,刚体和柔性模式混合,这意味着必须花费努力更新悬架系统的模型而不是测试物品本身。有时,人们还可以在不建立分析模型的情况下直接在分析中直接使用实验测量的无自由模式。本文提出了一种方法,该方法在结构的边界处使用应变计测量作为计算频率响应函数的参考。然后可以使用与无自由结构相关联的频率响应函数来估计模式。

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