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Dynamic response of axially loaded monosymmetrical thin-walled Bernoulli-Euler beams

机译:轴向加载单对称薄壁Bernoulli-Euler梁的动力响应

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The dynamic bending-torsion coupled vibrations of elastic axially loaded slender thin-walled beams with monosymmetrical cross-sections are investigated by using normal mode method. The Bernoulli-Euler beam theory is employed and the effects of warping stiffness and axial force are included in the present formulations. The theoretical expressions for the displacement response of axially loaded slender thin-walled beams subjected to concentrated or distributed loads are presented. The method is illustrated by its application to two test examples to describe the effects of warping stiffness and axial force on the dynamic behavior of thin-walled beams. The numerical results for the dynamic bending displacements and tor-sional displacements are given. The proposed theory is fairly general and can be used for thin-walled beam assemblage of arbitrary boundary conditions subjected to various kinds of loads.
机译:采用正模法研究了截面为单对称的弹性轴向受力细长薄壁梁的动态弯扭耦合振动。采用了伯努利-欧拉梁理论,翘曲刚度和轴向力的影响包括在本公式中。给出了集中荷载或分布荷载作用下轴向受力细长薄壁梁位移响应的理论表达式。通过将其应用于两个测试示例来说明该方法,以描述翘曲刚度和轴向力对薄壁梁动力特性的影响。给出了动态弯曲位移和扭转位移的数值结果。所提出的理论相当笼统,可用于承受各种载荷的任意边界条件的薄壁梁组合。

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