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Dynamic stiffness matrix of thin-walled composite I-beam with symmetric and arbitrary laminations

机译:具有对称和任意叠片的薄壁复合工字梁的动态刚度矩阵

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For the spatially coupled free vibration analysis of thin-walled composite I-beam with symmetric and arbitrary laminations, the exact dynamic stiffness matrix based oil the solution of the simultaneous ordinary differential equations is presented. For this, a general theory for the vibration analysis of composite beam with arbitrary lamination including the restrained warping torsion is developed by introducing Vlasov's assumption. Next, the equations of motion and force-displacement relationships are derived from the energy principle and the first order of transformed simultaneous differential equations are constructed by using the displacement state vector consisting of 14 displacement parameters. Then explicit expressions for displacement parameters are derived and the exact dynamic stiffness matrix is determined using force-displacement relationships. In addition, the finite-element (FE) procedure based on Hermitian interpolation polynomials is developed. To verify the validity and the accuracy of this study, the numerical solutions are presented and compared with analytical Solutions. the results from available references and the FE analysis using the thin-walled Hermitian beam elements. Particular emphasis is given in showing the phenomenon of vibrational mode change, the effects of increase of the modulus and the bending-twisting coupling stiffness for beams with various boundary conditions. (C) 2008 Published by Elsevier Ltd.
机译:为了对具有对称和任意叠片的薄壁复合工字梁进行空间耦合自由振动分析,提出了基于精确动力刚度矩阵的联立常微分方程的求解方法。为此,通过引入弗拉索夫的假设,建立了具有任意叠合的复合梁振动分析的一般理论,包括受约束的翘曲扭转。接下来,根据能量原理导出运动和力-位移关系方程,并使用由14个位移参数组成的位移状态向量构造一阶变换联立微分方程。然后导出位移参数的明确表达式,并使用力-位移关系确定确切的动态刚度矩阵。此外,还开发了基于Hermitian插值多项式的有限元(FE)程序。为了验证这项研究的有效性和准确性,提出了数值解并将其与解析解进行比较。可用参考文献的结果以及使用薄壁埃尔米特梁单元进行的有限元分析。在显示不同边界条件下的梁时,振动模式变化现象,模量增加和弯曲扭转​​耦合刚度的影响尤为突出。 (C)2008由Elsevier Ltd.发布

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