首页> 外文期刊>International journal of structural stability and dynamics >ELASTIC RESTRAINED DISTORTIONAL BUCKLING OF STEEL-CONCRETE COMPOSITE BEAMS BASED ON ELASTICALLY SUPPORTED COLUMN METHOD
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ELASTIC RESTRAINED DISTORTIONAL BUCKLING OF STEEL-CONCRETE COMPOSITE BEAMS BASED ON ELASTICALLY SUPPORTED COLUMN METHOD

机译:基于弹性支撑柱法的钢-混凝土组合梁的弹性约束变形屈曲

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摘要

Restrained distortional buckling (RDB) is different from overall buckling and distortional buckling, and it usually occurs in the hogging moment region of composite beams. It may govern the member design for some cases, and should be taken into consideration. The present paper investigates the elastic RDB of composite beams based on elastically supported column method. First, Svensson's elastically supported column model is improved by including the participation of the web as part of the buckling column. The corresponding theoretical expressions for the improved elastically support column subjected to a varying axial force are derived by the potential energy expression and equilibrium differential equation, respectively. Then, the precision of several elastically supported column methods for the RDB problem is discussed, based on the finite element method (FEM). The results show that elastically supported columns subjected to a negative uniform moment or a triangular moment have a good agreement with FEM results, but they are not valid for the cases of nonlinear moment distributions. In order to consider the complicated load conditions of composite beams, the equivalent moment assumption is introduced and proved to be suitable for the RDB problem. However, there is an applicable range of the length of the hogging moment region. Thus, a critical length formula of equivalent moment assumption of RDB is put forward and verified by FEM. Furthermore, a three-step simplified method is presented which can solve the elastic RDB problem of continuous composite beams. The proposed method, in which values of elastically supported column methods can be tabulated previously, is simple and suitable for design purposes.
机译:约束变形屈曲(RDB)与整体屈曲和变形屈曲不同,通常发生在复合梁的弯矩区域。在某些情况下,它可能支配成员的设计,应予以考虑。本文基于弹性支撑柱法研究了组合梁的弹性RDB。首先,通过将腹板的参与作为屈曲柱的一部分来改进Svensson的弹性支撑柱模型。通过势能表达式和平衡微分方程分别推导了改进的弹性支撑柱在变化的轴向力下的相应理论表达式。然后,基于有限元方法(FEM),讨论了几种针对RDB问题的弹性支撑柱方法的精度。结果表明,承受负均匀矩或三角形矩的弹性支撑柱与有限元结果具有很好的一致性,但对于非线性矩分布情况无效。为了考虑复合梁的复杂荷载工况,引入了等效弯矩假设,并证明其适合于RDB问题。但是,存在弯矩区域的长度的适用范围。因此,提出了有限元等效弯矩假设的临界长度公式,并通过有限元验证。此外,提出了一种三步简化方法,可以解决连续组合梁的弹性RDB问题。所提出的方法简单易行,适用于设计目的,在该方法中可以预先列出弹性支撑柱方法的值。

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