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Three-dimensional free vibration analysis of rotating laminated conical shells: layerwise differential quadrature (LW-DQ) method

机译:旋转叠层圆锥壳的三维自由振动分析:分层微分正交(LW-DQ)方法

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摘要

This paper focuses on the free vibration analysis of thick, rotating laminated composite conical shells with different boundary conditions based on the three-dimensional theory, using the layerwise differential quadrature method (LW-DQM). The equations of motion are derived applying the Hamilton's principle. In order to accurately account for the thickness effects, the layerwise theory is used to discretize the equations of motion and the related boundary conditions through the thickness of the shells. Then, the equations of motion as well as the boundary condition equations are transformed into a set of algebraic equation applying the DQM in the meridional direction. This study demonstrates the applicability, accuracy, stability and the fast rate of convergence of the present method, for free vibration analyses of rotating thick laminated conical shells. The presented results are compared with those of other shell theories obtained using conventional methods and a special case where the angle of the conical shell approaches zero, that is, a cylindrical shell and excellent agreements are achieved.
机译:本文基于三维理论,使用分层微分求积法(LW-DQM),对具有不同边界条件的厚的旋转层压复合圆锥壳进行了自由振动分析。运动方程是根据汉密尔顿原理导出的。为了准确地考虑厚度的影响,使用分层理论通过壳的厚度离散运动方程和相关的边界条件。然后,将运动方程以及边界条件方程转换为在子午方向应用DQM的一组代数方程。这项研究证明了本方法的适用性,准确性,稳定性和收敛速度快,适用于旋转厚叠层圆锥壳的自由振动分析。将给出的结果与使用常规方法获得的其他壳理论的结果进行比较,并且将特殊情况(圆锥形壳的角度接近于零)(即圆柱壳)并获得了出色的一致性。

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