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Ultimate strength of horizontally curved steel I-girders with equal end moments

机译:相等弯矩下水平弯曲的工字钢的极限强度

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摘要

Even under gravitational loading alone, horizontally curved girders experience not only bending moment but also torsional moment. The torsional moment acting on open sections simultaneously produces shear and normal stress due to pure and warping torsion respectively. Consequently, bending moment, pure torsion and warping torsion are coupled, which results in a very complicated stress state that makes it difficult to calculate the ultimate strength of horizontally curved members. This study revealed that the initial curvature can reduce the ultimate strength of horizontally curved members by up to 50%. Although current design specifications such as the AASHTO LRFD Bridge Design Specifications, suggest some alternatives, the exact behavior of a curved member cannot be considered well with those provisions. While it is true that the one-third rule is convenient to apply and gives good results, there is no strength equation for curved members. In order to derive an adequate strength equation for curved members, this research suggests a new concept of ultimate state. Finite element analysis using ABAQUS is used to consider the effects of sectional rigidities for bending, pure torsion and non-uniform torsion separately. Finally, an ultimate strength equation is suggested for simply supported curved girders that are subjected to equal end moments. (C) 2017 Elsevier Ltd. All rights reserved.
机译:即使仅在重力载荷下,水平弯曲的大梁不仅会经历弯矩,而且还会经历扭转力矩。作用在开放截面上的扭转力矩分别由于纯扭力和翘曲扭力同时产生剪切力和法向应力。因此,弯矩,纯扭力和翘曲扭力是耦合的,这导致非常复杂的应力状态,这使得难以计算水平弯曲构件的极限强度。这项研究表明,初始曲率可以使水平弯曲的构件的极限强度降低多达50%。尽管当前的设计规范(例如AASHTO LRFD桥梁设计规范)提出了一些替代方案,但使用这些规定不能很好地考虑弯曲构件的确切性能。确实,三分之一的规则很容易应用并且给出了很好的结果,但弯曲构件没有强度方程。为了得出弯曲构件的适当强度方程,本研究提出了极限状态的新概念。使用ABAQUS的有限元分析分别考虑了截面刚度对弯曲,纯扭转和非均匀扭转的影响。最后,对于承受相同端矩的简支弯梁,提出了极限强度方程。 (C)2017 Elsevier Ltd.保留所有权利。

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