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Design of web-tapered steel beams against lateral-torsional buckling through a stiffness reduction method

机译:刚度减小法抗弯扭腹腹式钢梁设计

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摘要

A stiffness reduction method for the lateral-torsional buckling (LTB) assessment of welded web-tapered steel beams is presented in this study. The method is implemented by (i) modelling a tapered steel beam using elastic beam finite elements specifically developed to represent the elastic instability response of tapered steel members, (ii) reducing the Young's modulus E and shear modulus G of each element through a stiffness reduction function considering the bending moments and cross-section properties at the middle of each element and (iii) performing an elastic Linear Buckling Analysis of the beam with reduced stiffness, referred to as LBA-SR herein. Since the adverse influence of the development of plasticity and imperfections on the ultimate member strengths are fully accounted for through stiffness reduction, the presented method does not require any further global instability assessment using member design equations; thus, the proposed method is both direct and practical. Verification of the method is shown for a wide range of web-tapered steel beams using results from nonlinear shell finite element modelling.
机译:本文提出了一种刚度减小方法,用于对焊接的腹板锥形钢梁进行横向扭转屈曲(LTB)评估。通过(i)使用专门开发来代表锥形钢构件的弹性不稳定性响应的弹性梁有限元建模锥形钢梁来实现该方法,(ii)通过降低刚度来减小每个构件的杨氏模量E和剪切模量G考虑到每个单元中间的弯矩和横截面特性,并且(iii)对刚度降低的梁进行弹性线性屈曲分析,在本文中称为LBA-SR。由于可塑性的降低和缺陷对最终构件强度的不利影响已通过降低刚度得到了充分解决,因此,本文提出的方法不需要使用构件设计方程式进行任何进一步的全局不稳定性评估。因此,该方法既直接又实用。使用非线性壳体有限元建模的结果,证明了该方法对于各种腹板锥形钢梁的验证。

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