Vibrations of cracked functionally graded beams: General solution and application – A review

N. T. Khiem
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引用次数: 2

Abstract

This paper presents a unified approach to vibration analysis of functionally graded beams with transverse open-edge cracks based on the so-called vibration shape obtained as a general solution of vibration equations in the frequency domain. The crack is modeled by a pair of translational and rotational springs of stiffness computed from the crack depth in dependence upon functionally graded material parameters. The frequency-dependent vibration shape functions allow one not only to obtain the closed-form solution of both free and forced vibrations for multiple cracked FGM beams but also to develop the well-known methods such as Transfer Matrix Method or Dynamic Stiffness Method for analysis of FGM framed structures. The proposed theoretical developments have been illustrated by their application for modal analysis and frequency response analysis of multi-span and multistep beams.
裂缝功能梯度梁的振动:一般解决方案和应用。综述
本文提出了一种基于振动方程频域通解所得到的所谓振动形的统一方法来分析具有横向开边裂纹的功能梯度梁的振动。用一对平移和旋转弹簧来模拟裂纹的刚度,由裂纹深度计算,依赖于功能梯度材料参数。频率相关的振型函数不仅可以得到多裂纹FGM梁的自由振动和强迫振动的封闭解,而且还可以发展出众所周知的FGM框架结构分析方法,如传递矩阵法或动刚度法。所提出的理论发展已被应用于多跨多阶梁的模态分析和频响分析。
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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