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Free vibration analysis of cracked composite beams subjected to coupled bending-torsion loads based on a first order shear deformation theory

机译:基于一阶剪切变形理论的耦合弯扭载荷作用下复合材料开裂梁的自由振动分析

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摘要

In this paper, free vibration analysis of cracked composite beam subjected to coupled bending-torsion loading is presented. The composite beam is assumed to have an open edge crack of length a. A first order shear deformation theory is applied to count for the effect of shear deformations on natural frequencies as well as the effect of coupling in torsion and bending modes of vibration. Governing equations and boundary conditions are derived using Hamilton principle. Local flexibility matrix is used to obtain the additional boundary conditions of the beam in cracked area. After obtaining the governing equations and boundary conditions, generalized differential quadrature (GDQ) method is applied to solve the obtained eigenvalue problem. Finally, some numerical results of beams with various boundary conditions and different fiber orientations are given to show the efficiency of the method. In addition, to study the effect of shear deformations, numerical results of the current model are compared with previously given results in which shear deformations were neglected.
机译:本文给出了开裂组合梁在弯扭耦合作用下的自由振动分析。假定复合梁具有长度为a的开口边缘裂纹。一阶剪切变形理论用于计算剪切变形对固有频率的影响以及在扭转和弯曲振动模式下的耦合影响。使用汉密尔顿原理导出控制方程和边界条件。局部挠度矩阵用于获得裂缝区域梁的附加边界条件。在获得控制方程和边界条件之后,应用广义微分正交(GDQ)方法来解决所获得的特征值问题。最后,给出了各种边界条件和纤维取向不同的光束的数值结果,表明了该方法的有效性。另外,为了研究剪切变形的影响,将当前模型的数值结果与先前给出的忽略了剪切变形的结果进行了比较。

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