Free Vibration of Axially Loaded Multi-Cracked Beams Using the Transfer Matrix Method

Y. S. A. Rjoub, Azhar G. Hamad
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引用次数: 7

Abstract

In this paper, an analytical method is developed to study the free vibration of multi-cracked, axially loaded beams with differing boundary conditions, namely, hinged-hinged, clamped-clamped, clamped-hinged, and clamped-free. The cracked beam system is modelled as a number of beam segments connected by massless rotational springs with sectional flexibility. Each segment is assumed to obey the Euler-Bernoulli beam theory. The characteristic equation of the cracked beam with differing boundary conditions, which is a function of the natural frequency, sizes and location of the cracks, and the physical parameters of the beam, as well as the corresponding mode shapes, is derived using a simple transfer matrix method. In this paper, a detailed parametric study is conducted to show the effects of cracks and axial load on vibrational properties of the cracked beam. The results obtained in this study agree well with analytical results available in the literature.
用传递矩阵法研究轴向加载多裂纹梁的自由振动
本文建立了具有不同边界条件(即铰-铰、夹-铰、夹-铰和无夹)的多裂纹轴向载荷梁的自由振动分析方法。将裂纹梁系统建模为由具有截面柔性的无质量旋转弹簧连接的若干梁段。假设每一段都服从欧拉-伯努利梁理论。用简单的传递矩阵法推导了不同边界条件下裂缝梁的特征方程,该方程是裂缝的固有频率、裂缝的大小和位置、梁的物理参数以及相应的模态振型的函数。本文对裂纹和轴向载荷对裂纹梁振动特性的影响进行了详细的参数化研究。本研究得到的结果与文献中的分析结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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