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Elastic lateral-torsional buckling strength and torsional bracing stiffness requirement for monosymmetric I-beams

机译:单对称工字梁的弹性横向扭转屈曲强度和扭转支撑刚度要求

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Elastic lateral-torsional budding (LTB) is a common failure mode of large span beams. In this phenomenon the beam becomes unstable along the unbraced length. This instability of beams can be identified by out-of-plane deflection and twisting. Using discrete torsional braces is one of the ways to prevent LTB. In this paper the LTB strength and bracing stiffness requirements of monosymmetric I-beams with discrete torsional braces, under pure bending condition is investigated. First, an analytical solution for an unlimited number of braces is presented by using an energy approach. Then the results of the proposed equations are compared with the results of a 1-D finite element analysis and the equivalent continuous brace stiffness concept. The comparison shows that the proposed equations are in good agreement with the finite element analysis. A parametric study is carried out for various dimensions and geometrical properties of cross sections. The results show that using the monosymmetric I-sections with larger compression flange is the more economical solution. Finally, the effects of linear moment gradient conditions and the cross sectional distortion on the LTB strength and bracing stiffness requirement are investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:弹性横向扭转萌芽(LTB)是大跨度梁的常见破坏模式。在这种现象下,光束沿无支撑长度变得不稳定。光束的这种不稳定性可以通过平面外偏转和扭曲来识别。使用离散的扭转支撑是防止LTB的方法之一。本文研究了在纯弯曲条件下具有离散扭转支撑的单对称工字梁的LTB强度和支撑刚度要求。首先,通过使用能量方法提出了无数种牙套的分析解决方案。然后将所提出的方程的结果与一维有限元分析和等效连续支撑刚度概念的结果进行比较。比较表明,所提出的方程与有限元分析吻合良好。对横截面的各种尺寸和几何特性进行了参数研究。结果表明,使用具有较大压缩凸缘的单对称I型截面是更经济的解决方案。最后,研究了线性矩梯度条件和截面变形对LTB强度和支撑刚度要求的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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