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首页> 外文期刊>Mechanics Based Design of Structures and Machines >REFINED SERIES METHODOLOGY FOR THE FULLY COUPLED THIN-WALLED LAMINATED BEAMS CONSIDERING FOUNDATION EFFECTS
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REFINED SERIES METHODOLOGY FOR THE FULLY COUPLED THIN-WALLED LAMINATED BEAMS CONSIDERING FOUNDATION EFFECTS

机译:考虑基础效应的全薄壁叠合梁的改进系列方法

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摘要

The refined power series solutions are presented for the coupled static analysis of thin-walled laminated beams resting on elastic foundation. For this purpose, the elastic strain energy considering the material and structural coupling effects and the energy including the foundation effects are constructed. The equilibrium equations and the force-displacement relationships are derived from the extended Hamilton's principle, and the explicit expressions for displacement parameters are presented based on power series expansions of displacement components. Finally, the member stiffness matrix is determined by using the force-displacement relationships. For comparison, the finite element model based on the Hermite cubic interpolation polynomial is presented. In order to verify the accuracy and the superiority of the laminated beam element developed by this study, the numerical solutions are presented and compared with results obtained from the regular finite beam elements and the ABAQUS's shell elements. The influences of the fiber angle change and the boundary conditions on the coupled behavior of laminated beams with mono-symmetric I-sections are investigated.
机译:提出了改进的幂级数解,用于弹性基础上薄壁层合梁的静力耦合分析。为此,构造考虑了材料和结构耦合效应的弹性应变能以及包括基础效应在内的能量。从扩展的汉密尔顿原理导出平衡方程和力-位移关系,并基于位移分量的幂级数展开给出位移参数的明确表达式。最后,通过使用力-位移关系确定构件刚度矩阵。为了进行比较,提出了基于Hermite三次插值多项式的有限元模型。为了验证本研究开发的叠层梁单元的准确性和优越性,提出了数值解并将其与常规有限元单元和ABAQUS的壳单元获得的结果进行了比较。研究了光纤角度变化和边界条件对单截面工字形层合梁耦合特性的影响。

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