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A transfer matrix method for free vibration analysis and crack identification of stepped beams with multiple edge cracks and different boundary conditions

机译:传递矩阵法进行多边裂纹,边界条件不同的阶梯梁的自由振动分析和裂纹识别

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摘要

This paper illustrates an analytical approach to investigating natural frequencies and mode shapes of a stepped beam with an arbitrary number of transverse cracks and general form of boundary conditions. A new method to solve the inverse problem of determining the location and depth of multiple cracks is also presented. Based on the Euler-Bernoulli beam theory, the stepped cracked beam is modeled as an assembly of uniform sub-segments connected by massless rotational springs representing local flexibility induced by the non-propagating edge cracks. A simple transfer matrix method is utilized to obtain the general form of characteristic equation for the cracked beam, which is a function of frequency, the locations and sizes of the cracks, boundary conditions, geometrical and physical parameters of the beam. The proposed method is then used to form a system of 2N equations in order to identify N cracks exploiting 2N measured natural frequencies of the damaged beam. Various numerical examples for both direct and inverse problem are provided to validate the present approach. The results are in good agreement with those obtained by finite element and experimental methods.
机译:本文阐述了一种分析方法,用于研究具有任意数量的横向裂纹和边界条件的一般形式的阶梯梁的固有频率和振型。提出了解决确定多个裂纹位置和深度的反问题的新方法。基于Euler-Bernoulli梁理论,将阶梯状裂纹梁建模为由无质量旋转弹簧连接的均匀子段的组合,这些弹簧代表了非传播性边缘裂纹引起的局部挠性。利用一种简单的传递矩阵方法来获得裂纹梁特征方程的一般形式,它是频率,裂纹位置和大小,边界条件,梁的几何和物理参数的函数。然后,将所提出的方法用于形成2N个方程的系统,以便利用2N个测得的受损梁的固有频率来识别N个裂缝。提供了直接和反问题的各种数值示例,以验证本方法。结果与通过有限元和实验方法获得的结果吻合良好。

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