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Exact stiffness matrix of mono-symmetric composite I-beams with arbitrary lamination

机译:任意层压单对称复合工字梁的精确刚度矩阵

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摘要

The exact stiffness matrix, based on the simultaneous solution of the ordinary differential equations, for the static analysis of mono-symmetric arbitrarily laminated composite I-beams is presented herein. For this, a general thin-walled composite beam theory with arbitrary lamination including torsional warping is developed by introducing Vlasov's assumption. The equilibrium equations and force-deformation relations are derived from energy principles. The explicit expressions for displacement parameters are then derived using the displacement state vector consisting of 14 displacement parameters, and the exact stiffness matrix is determined using the force-deformation relations. In addition, the analytical solutions for symmetrically laminated composite beams with various boundary conditions are derived as a special case. Finally, a finite element procedure based on Hermitian interpolation polynomial is developed. To demonstrate the validity and the accuracy of this study, the numerical solutions are presented and compared with the analytical solutions and the finite element results using the Hermitian beam elements and ABAQUS's shell element.
机译:本文介绍了基于常微分方程同时解的精确刚度矩阵,用于单对称任意叠层复合工字梁的静态分析。为此,通过引入弗拉索夫的假设,发展了一种具有任意叠层的一般薄壁复合梁理论,包括扭转翘曲。平衡方程和力-变形关系从能量原理导出。然后使用由14个位移参数组成的位移状态向量导出位移参数的明确表达式,并使用力-变形关系确定精确的刚度矩阵。另外,作为特殊情况,导出了具有不同边界条件的对称层合复合梁的解析解。最后,提出了一种基于埃尔米特插值多项式的有限元程序。为了证明本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了比较,并使用了埃尔米特式梁单元和ABAQUS的壳单元进行了有限元结果的比较。

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