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首页> 外文期刊>Thin-Walled Structures >Buckling behaviour of thin-walled laminated composite beams having open and closed sections subjected to axial and end moment loading
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Buckling behaviour of thin-walled laminated composite beams having open and closed sections subjected to axial and end moment loading

机译:承受轴向和终端力矩荷载的具有开放和闭合截面的薄壁层压复合梁的屈曲行为

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摘要

An efficient modelling technique based on one dimensional (1D) beam finite element analysis for buckling of thin-walled laminated composite beams having open/closed sections is proposed. The formulation derived has sufficient generality for accommodating arbitrary stacking sequences of the individual beam section walls, and includes all possible couplings between axial, shear, bending and torsional modes of deformation. The effects of transverse shear deformation of the section walls and out-of-plane warping of the beam section are considered where provision exists to restrain or allow warping deformation. The incorporation of shear deformation leads to a problem in the finite element implementation of the proposed beam kinematics, but this is successfully addressed adopting a novel modelling concept. Numerical results obtained for the sample cases of open sections I beams and closed section box beams are presented. The numerical results are benchmarked/compared to data available in open literature, and it is shown that the proposed model performs very well. Finally, a study of the effect of axial and end moment loading, acting alone or in combination, on the buckling response of thin-walled composite beams is presented.
机译:提出了一种基于一维(1D)有限元分析的薄壁层压开合截面薄壁复合梁屈曲的有效建模技术。得出的公式具有足够的通用性,可以适应各个梁截面壁的任意堆叠顺序,并且包括轴向,剪切,弯曲和扭转变形模式之间的所有可能耦合。在存在限制或允许翘曲变形的地方,应考虑截面壁的横向剪切变形和梁截面的平面外翘曲的影响。剪切变形的纳入导致了所提出的梁运动学的有限元实现中的问题,但是采用新颖的建模概念已成功解决了这一问题。给出了开放截面I型梁和封闭截面箱形梁的样本情况的数值结果。数值结果与公开文献中的数据进行了基准/比较,结果表明所提出的模型表现良好。最后,研究了单独或组合作用的轴向和最终弯矩荷载对薄壁组合梁屈曲响应的影响。

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