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首页> 外文期刊>International journal of steel structures >Effect of Shear and Distortion Deformations on Lateral Buckling Resistance of Box Elements in the Framework of Eurocode 3
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Effect of Shear and Distortion Deformations on Lateral Buckling Resistance of Box Elements in the Framework of Eurocode 3

机译:剪切变形和变形对欧洲规范3框架中盒形元件横向抗弯性能的影响

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摘要

This paper treats the distortional and shear deformation effects on the elastic lateral torsional buckling of thin-walled box beam elements, under combined bending and axial forces. For the purpose, a nonlinear kinematic model based on higher order theory is used applicable to both short and long thin-walled box beams. Because in the kinematic model of the higher order theory integrates additional flexibility terms related to shear, distortion and warping effects, it accurately predicts the lateral torsional buckling of the straight box beams. Ritz's method is adopted as solution strategy in order to obtain the nonlinear governing equilibrium equations, then the buckling loads are computed by solving the eigenvalue problem basing on the singularity of the tangential stiffness matrix. Owing to flexural-torsional and distortional couplings, new matrices are obtained in both geometric and initial stress parts of the tangent stiffness matrix. The proposed method with the new stiffness terms, is efficient and accurate in lateral torsional buckling predictions, when compared with the commercial FEM code ABAQUS results. Based on the existing European guidelines EC3, an extensive numerical investigation is performed to demonstrate the effects of both shear and distortional deformations on the moment carrying capacity. The convenience of the model is outlined and the limit of models developed without shear and distortion deformation effects on lateral buckling loads evaluation is discussed.
机译:在弯曲和轴向力共同作用下,研究了变形和剪切变形对薄壁箱形梁单元弹性横向扭转屈曲的影响。为此,使用了基于高阶理论的非线性运动学模型,适用于短和长薄壁箱形梁。因为在高阶理论的运动学模型中集成了与剪切,变形和翘曲效应有关的其他柔韧性项,所以它可以准确地预测直箱形梁的横向扭转屈曲。为了获得非线性控制平衡方程,采用了Ritz方法作为求解策略,然后基于切向刚度矩阵的奇异性,通过求解特征值问题来计算屈曲载荷。由于弯曲-扭转和变形耦合,在切线刚度矩阵的几何和初始应力部分都获得了新的矩阵。与商业有限元代码ABAQUS结果相比,该方法具有新的刚度项,在横向扭转屈曲预测中有效且准确。根据现有的欧洲准则EC3,进行了广泛的数值研究,以证明剪切变形和变形变形对矩承载力的影响。概述了该模型的便利性,并讨论了在没有剪切和变形变形影响横向屈曲载荷评估的情况下建立的模型的极限。

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