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Geometrical nonlinear analysis of thin-walled composite beams using finite element method based on first order shear deformation theory

机译:基于一阶剪切变形理论的薄壁组合梁几何非线性有限元分析

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摘要

Based on a seven-degree-of-freedom shear deformable beam model, a geometrical nonlinear analysis of thin-walled composite beams with arbitrary lay-ups under various types of loads is presented. This model accounts for all the structural coupling coming from both material anisotropy and geometric nonlinearity. The general nonlinear governing equations are derived and solved by means of an incremental Newton-Raphson method. A displacement-based one-dimensional finite element model that accounts for the geometric nonlinearity in the von Karman sense is developed to solve the problem. Numerical results are obtained for thin-walled composite beam under vertical load to investigate the effects of fiber orientation, geometric nonlinearity, and shear deformation on the axial-flexural-torsional response.
机译:基于七自由度剪切可变形梁模型,提出了在各种荷载作用下任意叠合的薄壁组合梁的几何非线性分析。该模型考虑了来自材料各向异性和几何非线性的所有结构耦合。通过增量牛顿-拉夫森方法,推导并求解了一般的非线性控制方程。为了解决该问题,建立了基于位移的一维有限元模型,该模型考虑了von Karman意义上的几何非线性。计算了薄壁组合梁在垂直荷载下的数值结果,以研究纤维取向,几何非线性和剪切变形对轴向-挠度-扭转响应的影响。

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