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High-order free vibration analysis of sandwich beams with a flexible core using dynamic stiffness method

机译:弹性刚度夹芯梁的高阶自由振动的动力刚度分析

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In this paper, high-order free vibration of three-layered symmetric sandwich beam is investigated using dynamic stiffness method. The governing partial differential equations of motion for one element are derived using Hamilton's principle. This formulation leads to seven partial differential equations which are coupled in axial and bending deformations. For the harmonic motion, these equations are divided into two ordinary differential equations by considering the symmetrical sandwich beam. Closed form analytical solutions of these equations are determined. By applying the boundary conditions, the element dynamic stiffness matrix is developed. The element dynamic stiffness matrices are assembled and the boundary conditions of the beam are applied, so that the dynamic stiffness matrix of the beam is derived. Natural frequencies and mode shapes are computed by use of numerical techniques and the known Wittrick-Williams algorithm. Finally, some numerical examples are discussed using dynamic stiffness method.
机译:本文采用动力刚度法研究了三层对称夹层梁的高阶自由振动。使用汉密尔顿原理推导一个元素的支配运动偏微分方程。该公式导致七个偏微分方程,它们在轴向变形和弯曲变形中耦合。对于谐波运动,通过考虑对称夹层梁,这些方程式分为两个常微分方程式。确定这些方程式的封闭形式解析解。通过应用边界条件,开发了单元动态刚度矩阵。组装单元动态刚度矩阵并应用梁的边界条件,从而得出梁的动态刚度矩阵。通过使用数值技术和已知的Wittrick-Williams算法来计算固有频率和模式形状。最后,利用动力刚度法讨论了一些数值例子。

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