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Cyclic Elastoplastic Large Displacement Analysis of Cold-formed Steel Box Columns under Combined Action of Axial and Bidirectional Lateral Loading

机译:轴向和双向横向载荷组合作用下冷成型钢箱柱循环弹塑性大型位移分析

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This paper deals with the cyclic elastoplastic large displacement analysis of cold-formed steel box columns under combined action of axial and bidirectional lateral loading. Cold-formed steel box columns are very useful in highway bridge pier construction as they offer flexible space requirement and provide speedy construction. Behavior of cold-formed steel box columns under earthquake-induced loads is rather complicated as earthquakes occur in an oblique direction. However, modern seismic design philosophies have been based on the behavior of structures under independent actions of uni-directional loading in orthogonal directions. In this study, inelastic cyclic behavior of steel columns subjected to constant axial force together with simultaneous bi-directional cyclic lateral loads is investigated using an advanced finite element analyses procedure. Several types of linear and non-linear idealized loading patterns are employed to check the strength and ductility. The effects of important structural parameters and loading history on the behavior of cold-formed thin-walled steel box columns are examined using the proposed procedure.
机译:本文涉及轴向和双向横向载荷的组合作用下冷成型钢箱柱的环状弹塑性大型位移分析。冷成型钢箱柱在公路桥墩结构中非常有用,因为它们提供灵活的空间要求并提供快速的建筑。由于倾斜方向发生地震发生,冷成型钢箱柱在地震诱导的载荷下的行为相当复杂。然而,现代地震设计哲学基于结构在正交方向上的单向装载的独立行动下的结构。在该研究中,使用先进的有限元分析程序研究了经受恒定轴向力与同时双向循环横向载荷一起进行恒定轴向的钢柱的非弹性循环行为。采用几种类型的线性和非线性理想装载图案来检查强度和延展性。使用所提出的程序检查重要结构参数和装载史对冷成型薄壁钢箱柱行为的影响。

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