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Distortional lateral torsional buckling of beam-columns including pre-buckling deformation effects

机译:梁柱的扭曲横向扭转屈曲,包括预屈曲变形效应

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The present study develops a unified distortional lateral torsional buckling finite element formulation for the elastic analysis of beam-columns with wide flange doubly symmetric cross-sections. The solution captures several non-conventional features including the softening effect due to web distortion, the stiffening effect induced by pre-buckling deformations, the pre-buckling nonlinear interaction between strong-axis moments and axial forces, the contribution of pre-buckling shear deformation effects, the destabilizing effects due to loads being offset from the shear centre, and the presence of transverse stiffeners on web distortion. In the present theory, it is possible to evoke/suppress any combination of features and thus isolate the individual contribution of each effect or quantify the combined contributions of multiple effects. The effects of beam span-to-depth, flange width-to-thickness, web height-to-thickness, and flange width-to-web height ratios on the critical moments are investigated. Comparisons with conventional lateral torsional buckling solutions that omit distortional and pre-buckling effects quantify the influence of distortional and/or pre-buckling deformation effects. The theory is also used to investigate the influence of P-delta effects of beam-columns subjected to transverse and axial forces on their lateral torsional buckling. The solution is adopted to quantify the beneficial effects of transverse stiffeners in controlling/suppressing web distortion in beams. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究开发了一种统一的变形侧向扭转屈曲有限元公式,用于宽翼缘双对称截面的梁柱的弹性分析。该解决方案具有几个非常规特征,包括腹板变形引起的软化作用,预屈曲变形引起的加劲作用,强轴弯矩和轴向力之间的预屈曲非线性相互作用,预屈曲剪切变形的贡献效果,由于载荷偏离剪切中心而引起的去稳定作用,以及在腹板变形时存在横向加强筋。在本理论中,可以唤起/抑制特征的任何组合,从而隔离每个效果的单独贡献或量化多个效果的组合贡献。研究了梁跨度对深度,翼缘宽度对厚度,腹板高度对厚度以及翼缘宽度对腹板高度比对临界弯矩的影响。与省略了扭曲和预屈曲效果的传统横向扭转屈曲解决方案的比较,量化了扭曲和/或预屈曲变形效应的影响。该理论还用于研究受横向和轴向力作用的梁柱的P-delta效应对其横向扭转屈曲的影响。采用该解决方案来量化横向加劲肋在控制/抑制梁中腹板变形方面的有益效果。 (C)2018 Elsevier Ltd.保留所有权利。

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