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FE analysis of circular CFT columns considering bond-slip effect: Evaluation of ultimate strength

机译:考虑粘结滑移效应的圆形CFT柱的有限元分析:极限强度评估

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In this paper, a simple design equation to predict the resisting capacity of circular CFT columns is introduced, and the accompanying design procedure entails two phases: construction of the linearized P-M interaction diagram for a circular CFT column section and its adjustment according to the slenderness ratio. To construct the linearized P-M interaction diagram of circular CFT columns without a rigorous nonlinear analysis, simple equations are proposed in this paper. In advance, on the basis of the numerical results obtained by the use of the analytical model introduced in the previous paper, the ultimate resisting capacity reduction factors are designed through a curvilinear regression, and the use of these reduction factors makes it possible to determine the ultimate resisting capacity of slender CFT columns without any rigorous nonlinear analysis. Finally, the efficiency of the introduced design equation is verified on the basis of the comparison of the ultimate resisting capacities calculated in this paper with those determined by rigorous nonlinear analyses and by the AISC design guideline and the Eurocode. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了一个简单的设计公式来预测圆形CFT柱的抗力,伴随的设计过程包括两个阶段:构建圆形CFT柱截面的线性PM相互作用图以及根据细长比进行调整。为了在不进行严格非线性分析的情况下构建圆形CFT柱的线性P-M相互作用图,提出了简单的方程式。事先,根据使用前一篇论文介绍的分析模型获得的数值结果,通过曲线回归设计极限抗力减小因子,并使用这些减小因子来确定细长CFT柱的极限抗力没有任何严格的非线性分析。最后,在将本文计算的极限抗力与通过严格的非线性分析以及AISC设计准则和欧洲规范确定的极限抗力进行比较的基础上,验证了引入的设计方程的效率。 (C)2017 Elsevier Ltd.保留所有权利。

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