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Lateral post-buckling analysis of thin-walled open section beams

机译:薄壁开口截面梁的横向屈曲分析

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Thin-walled beams with open sections are studied using a nonlinear model. This model is developed in the context of large displacements and small deformations, by accounting for bending-bending and bending-torsion couplings. The warping and shortening effects are considered in the torsion equilibrium equation. The governing coupled equilibrium equations obtained from Galerkin's method are solved by a Newton-Raphson iterative process. It is established that the buckling loads are highly dependent on the pre-buckling deformations of the beam. The bifurcated branches are unstable and strongly influenced by shortening effects. Some comparisons are presented with the solutions commonly used in linear stability, like in the standard European steel code (Eurocode 3). The regular solutions appear to be very conservative, especially for I sections with large flanges.
机译:使用非线性模型研究了具有开放截面的薄壁梁。通过考虑弯曲-弯曲和弯曲-扭转耦合,在大位移和小变形的情况下开发了该模型。在扭转平衡方程中考虑了翘曲和缩短的影响。由Galerkin方法获得的控制耦合平衡方程通过牛顿-拉夫森迭代过程求​​解。可以确定屈曲载荷高度取决于梁的预屈曲变形。分叉的分支不稳定,并且受起酥油作用的强烈影响。与通常用于线性稳定性的解决方案进行了一些比较,例如在标准欧洲钢规(Eurocode 3)中。常规解决方案似乎非常保守,尤其是对于带有大法兰的I型截面。

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