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首页> 外文期刊>International journal of non-linear mechanics >Crack identification in elastically restrained vibrating rods
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Crack identification in elastically restrained vibrating rods

机译:弹性约束振动棒的裂纹识别

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摘要

In this paper we consider the problem of identifying an open crack in a longitudinally vibrating rod with smooth variable profile by minimal eigenfrequency data. The crack is assumed to be open during vibration and it is modelled by an elastic spring acting along the rod axis. Most, if not all, the results available in the literature for this inverse problem refer to ideal end conditions, that is the rod is either under free or supported end conditions. As an example of almost optimal result, it is known that the knowledge of the fundamental (positive) natural frequency of the rod under free-free and cantilever end conditions allows for the unique determination of the crack, without any restriction on the damage severity. In this paper we show that the analysis of the analogous crack identification problem for rods under elastically restrained end conditions leads to different results and that, in general, the knowledge of the fundamental frequency belonging to two spectra associated to different end conditions is not sufficient for the uniqueness of the solution. The method we used to solve the inverse problem is of constructive type and it is based on general properties of the eigenfrequencies as functions of the position and severity of the crack. The identification procedure has been tested numerically on rods under various damage scenarios. Numerical results agree well with the theory, even in presence of noisy input data.
机译:在本文中,我们考虑通过最小的本征频率数据来识别具有平滑可变轮廓的纵向振动杆中的开裂问题。假定裂纹在振动过程中是开放的,并且通过沿着杆轴作用的弹性弹簧来模拟。文献中针对该反问题的大多数(如果不是全部)结果都指向理想的端部条件,即杆处于自由端部或支撑端部条件下。作为几乎最佳结果的一个例子,已知在自由和悬臂端部条件下,棒的基本(正)固有频率的知识可以唯一确定裂纹,而对损伤的严重程度没有任何限制。在本文中,我们表明,在受弹性约束的端部条件下对棒的类似裂纹识别问题的分析得出不同的结果,并且通常,对于属于不同端部条件的两个光谱所属的基本频率的了解不足以实现解决方案的独特性。我们用来解决反问题的方法是构造型的,它基于特征频率的一般属性,该属性是裂纹位置和严重性的函数。识别程序已在各种损坏情况下在棒上进行了数字测试。即使存在嘈杂的输入数据,数值结果也与理论非常吻合。

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