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Lateral-torsional buckling assessment of steel beams through a stiffness reduction method

机译:通过刚度降低法评估钢梁的横向屈曲屈曲

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摘要

This paper presents a stiffness reduction approach utilising Linear Buckling Analysis (LBA) with developed stiffness reduction functions for the lateral–torsional buckling (LTB) assessment of steel beams. A stiffness reduction expression is developed for the LTB assessment of beams subjected to uniform bending and modified for the consideration of moment gradient effects on the development of plasticity. The proposed stiffness reduction method considers the influence of imperfections and plasticity on the response through the reduction of the Young's modulus E and shear modulus G and obviates the need of using LTB buckling curves in design. The accuracy and practicality of the method are illustrated for regular, irregular, single and multi-span beams. In all of the considered cases, the proposed method is verified against the results obtained through nonlinear finite element modelling.
机译:本文提出了一种采用线性屈曲分析(LBA)的刚度降低方法,该方法具有发达的刚度降低功能,用于评估钢梁的横向扭转屈曲(LTB)。开发了一种刚度减小表达式,用于对承受均匀弯曲的梁进行LTB评估,并考虑到弯矩梯度对可塑性发展的影响进行了修改。所提出的刚度减小方法通过减小杨氏模量E和剪切模量G来考虑缺陷和可塑性对响应的影响,并且避免了在设计中使用LTB屈曲曲线的需要。说明了规则,不规则,单跨和多跨波束的方法的准确性和实用性。在所有考虑的情况下,针对通过非线性有限元建模获得的结果验证了所提出的方法。

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