Determination of the bearing capacity of encentrally compressed concrete filled steel tubular columns on the basis of the deformation theory of concrete plasticity

K. Khashkhozhev, L. I. Lesnyak, R. M. Kurachev, A. Chepurnenko
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Abstract

Objective. The article proposes a method for finite element analysis of pipe-concrete columns in a physically nonlinear setting by reducing a three-dimensional problem to a twodimensional one based on the hypothesis of plane sections.Method.The equations of the theory of plasticity of concrete by G.A. Geniev are used. The technique was tested by comparing the solution with a calculation in a three-dimensional setting in the LIRA-SAPR software package, as well as with the experimental data of A.I. Sagadatov and calculation according to the current Russian design codes for steel-pipe concrete structures.Result. It has been established that the effective area of operation of columns with a circular cross section is small eccentricities of the longitudinal force.Conclusion. The proposed approach can be applied to the analysis of the stress-strain state and the bearing capacity of pipe-concrete columns of arbitrary section. There are no restrictions on the composition of concrete, and the shell material can be not only steel, but also fiberglass. 
基于混凝土塑性变形理论的钢管混凝土中压柱承载力的确定
目标。本文提出了一种基于平面截面假设,将三维问题简化为二维问题的物理非线性管混凝土柱有限元分析方法。方法采用Geniev的混凝土塑性理论方程。通过与LIRA-SAPR软件包中的三维环境计算,以及A.I. Sagadatov的实验数据和根据现行俄罗斯钢管混凝土结构设计规范的计算,对该技术进行了验证。结果表明,圆截面柱的有效作用面积为纵力的小偏心率。该方法可应用于任意截面管-混凝土柱的应力-应变状态及承载力分析。对混凝土的成分没有限制,外壳材料不仅可以是钢,也可以是玻璃纤维。
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