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Identification of crack parameters in a cantilever beam under uncertain end conditions

机译:确定不确定端部条件下悬臂梁的裂纹参数

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摘要

The local effect of "softening" at the crack location can be simulated by an equivalent spring connecting the two segments of the beam. As modelling the crack, the non-perfectly rigid clamp is also simulated as a torsional spring of unknown stiffness. Combined with the Bernoulli-Euler theories of beam, the present model is applied to derive the characteristic equation of the cantilever beam under uncertain end conditions related to the crack parameters, namely, the location and the depth of the crack. Based on this characteristic equation, an accurate crack identification method is developed to identify the location and the depth of the crack by minimizing the difference between the analytical and experimental frequency values. The proposed approach is verified by two cantilever beam experiments under ideal boundary conditions and uncertain end conditions. It is found that the location and the depth of the crack can be worked out when at least three natural frequencies are known. For crack identification of the cantilever beam under uncertain end conditions, the identified crack location of the proposed approach is more accurate than the Narkis' method. Furthermore, the crack depth can also be obtained by the present method.
机译:可以通过连接梁的两段的等效弹簧来模拟在裂纹位置处的“软化”局部效应。在对裂缝建模时,非完全刚性的夹具也会被模拟为刚度未知的扭转弹簧。结合梁的Bernoulli-Euler理论,本模型被用于导出在不确定的端部条件下与裂缝参数有关的悬臂梁的特征方程,即裂缝的位置和深度。基于该特征方程,开发了一种精确的裂纹识别方法,通过最小化分析频率值和实验频率值之间的差异来识别裂纹的位置和深度。通过在理想边界条件和不确定终点条件下的两个悬臂梁实验验证了该方法的有效性。已经发现,只要知道至少三个固有频率,就可以算出裂纹的位置和深度。对于不确定端部条件下悬臂梁的裂纹识别,所提出方法的识别裂纹位置比Narkis方法更准确。此外,裂纹深度也可以通过本方法获得。

著录项

  • 来源
    《Key Engineering Materials 》 |2009年第2009期| 117-124| 共8页
  • 作者单位

    Institute of Applied Mechanics and Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China;

    Institute of Applied Mechanics and Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China;

    College of Science & Engineering, Jinan University, Guangzhou 510632, China;

    College of Science & Engineering, Jinan University, Guangzhou 510632, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    crack; parameter identification; cantilever beam;

    机译:裂纹;参数识别;悬臂梁;

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