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Dynamic stiffness formulation and free vibration analysis of a spinning composite beam

机译:旋转复合梁的动态刚度公式化和自由振动分析

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The dynamic stiffness matrix of a spinning composite beam is developed and then used to investigate its free vibration characteristics. Of particular interest in this study is the inclusion of the bending-torsion coupling effect that arises from the ply orientation and stacking sequence in laminated fibrous composites. The theory is particularly intended for thin-walled composite beams and does not include the effects of shear deformation and rotatory inertia. Hamilton's principle is used to derive the governing differential equations, which are solved for harmonic oscillation. Exact expressions for the bending displacement, bending rotation, twist, bending moment, shear force and torque at any cross-section of the beam, are also obtained in explicit analytical form. The dynamic stiffness matrix, which relates the amplitudes of loads to those of responses at the end of the spinning beam in free vibration is then derived by imposing the boundary conditions. This enables natural frequency calculation of a spinning composite beam at various spinning speeds to be made by applying the Wittrick-Williams algorithm to the resulting dynamic stiffness matrix. The spinning speed at which the fundamental natural frequency tends to zero is the critical speed, which is established for a composite shaft that has been taken from the literature as an example. The results are discussed and some are compared with published ones. The paper concludes with some remarks.
机译:建立了旋转复合梁的动态刚度矩阵,然后研究其自由振动特性。在这项研究中,特别令人感兴趣的是在叠层纤维复合材料中包含了由层定向和堆叠顺序引起的弯曲-扭转耦合效应。该理论特别适用于薄壁组合梁,并且不包括剪切变形和旋转惯性的影响。用汉密尔顿原理导出控制微分方程,求解该方程用于谐波振荡。还可以通过明确的分析形式获得梁的任何横截面的弯曲位移,弯曲旋转,扭曲,弯曲力矩,剪切力和扭矩的精确表达式。然后,通过施加边界条件,得出将载荷的振幅与纺纱梁末端自由振动响应的振幅相关联的动态刚度矩阵。通过将Wittrick-Williams算法应用于所得的动态刚度矩阵,可以在各种旋转速度下进行旋转复合梁的固有频率计算。基本固有频率趋于零的旋转速度是临界速度,该临界速度是针对复合轴而建立的,该复合轴已从文献中作为示例。讨论了结果,并与已发表的结果进行了比较。本文以一些评论结束。

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