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首页> 外文期刊>Journal of Sound and Vibration >Effects of shear stiffness, rotatory and axial inertia, and interface stiffness on free vibrations of a two-layer beam
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Effects of shear stiffness, rotatory and axial inertia, and interface stiffness on free vibrations of a two-layer beam

机译:剪切刚度,旋转和轴向惯性以及界面刚度对两层梁自由振动的影响

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摘要

The linear dynamics of a two-layer beam is considered. Each beam is modelled by the Timoshenko kinematics, and all inertia terms are considered. The interface allows normal and tangential detachments, which are linearly proportional to the transmitted stresses. The eigenvalue problem providing the natural frequencies is solved exactly. An extensive study of the natural frequencies and of the normal modes is performed with the aim of understanding how the mechanical parameters of the composite influence the vibration behaviour. The study of the convergence of the solution toward that of a simplified problem obtained by neglecting axial and rotational inertia, shear deformations and by considering interface perfect adherence in the normal direction, constitutes the second objective of the work. This permits to consciously assess when these mechanical terms can actually be neglected, contrarily to what is usually done in practice, where they are disregarded 'a priori', without adequate care.
机译:考虑了两层光束的线性动力学。每个梁都由Timoshenko运动学建模,并考虑所有惯性项。该界面允许法向和切向分离,这些分离与传递的应力成线性比例。提供固有频率的特征值问题得到了精确解决。为了了解复合材料的机械参数如何影响振动性能,对固有频率和正常模式进行了广泛的研究。研究解决方案趋向于通过忽略轴向和旋转惯性,剪切变形以及在法向方向上考虑界面完美附着而获得的简化问题的收敛性,这是这项工作的第二个目标。这就允许有意识地评估这些机械术语何时可以被实际忽略,这与通常在实践中通常采取的做法相反,在没有充分注意的情况下,它们被忽略为“先验”。

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