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An exact dynamic stiffness element using a higher order shear deformation theory for free vibration analysis of composite plate assemblies

机译:使用高阶剪切变形理论的精确动态刚度元素,用于复合板组件的自由振动分析

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摘要

An exact dynamic stiffness method based on higher order shear deformation theory is developed for the first time using symbolic computation in order to carry out free vibration analysis of composite plate assemblies. Hamilton's principle is applied to derive the governing differential equations of motion and natural boundary conditions. Then by imposing the geometric boundary conditions in algebraic form the dynamic stiffness matrix is developed. The Wittrick-Williams algorithm is used as solution technique to compute the natural frequencies and mode shapes for a range of laminated composite plates and stepped panels. The effects of significant parameters such as thickness ratio, orthotropy ratio, step ratio, number of layers, lay-up and stacking sequence and boundary conditions on the natural frequencies and mode shapes are critically examined and discussed. The accuracy of the method is demonstrated by comparing results with those available in the literature.
机译:为了进行复合材料板组件的自由振动分析,首次采用符号计算方法,提出了一种基于高阶剪切变形理论的精确动力刚度方法。汉密尔顿原理被用于导出运动和自然边界条件的控制微分方程。然后通过以代数形式施加几何边界条件,建立了动态​​刚度矩阵。 Wittrick-Williams算法用作解决方案技术,可计算一系列层压复合板和阶梯式面板的固有频率和振型。严格审查和讨论了诸如厚度比,正交各向异性比,台阶比,层数,铺层和堆叠顺序以及边界条件等重要参数对固有频率和振型的影响。通过将结果与文献中的结果进行比较,可以证明该方法的准确性。

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