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A refined dynamic stiffness element for free vibration analysis of cross-ply laminated composite cylindrical and spherical shallow shells

机译:精细的动态刚度元件,用于交叉层压的复合圆柱和球形浅壳的自由振动分析

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摘要

An exact free vibration analysis of doubly-curved laminated composite shallow shells has been carried out by combining the dynamic stiffness method (DSM) and a higher order shear deformation theory (HSDT). In essence, the HSDT has been exploited to develop first the dynamic stiffness (DS) element matrix and then the global DS matrix of composite cylindrical and spherical shallow shell structures by assembling the individual DS elements. As an essential prerequisite, Hamilton's principle is used to derive the governing differential equations and the related natural boundary conditions. The equations are solved symbolically in an exact sense and the DS matrix is formulated by imposing the natural boundary conditions in algebraic form. The Wittrick-Williams algorithm is used as a solution technique to compute the eigenvalues of the overall DS matrix. The effect of several parameters such as boundary conditions, orthotropic ratio, length-to-thickness ratio, radius-to-length ratio and stacking sequence on the natural frequencies and mode shapes is investigated in details. Results are compared with those available in the literature. Finally some concluding remarks are drawn.
机译:结合动态刚度法(DSM)和高阶剪切变形理论(HSDT),对双曲叠层复合浅壳进行了精确的自由振动分析。本质上,已经利用HSDT来开发动态刚度(DS)元素矩阵,然后通过组装各个DS元素来开发复合圆柱和球形浅壳结构的整体DS矩阵。作为基本前提,汉密尔顿原理用于导出控制微分方程和相关的自然边界条件。在精确意义上以符号形式求解方程式,并通过以代数形式施加自然边界条件来制定DS矩阵。 Wittrick-Williams算法被用作一种解决方案技术,用于计算整个DS矩阵的特征值。详细研究了边界条件,正交各向异性比,长厚比,半径长比和堆叠顺序等几个参数对固有频率和振型的影响。将结果与文献中的结果进行比较。最后,得出一些结论性意见。

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