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Experimental and numerical investigations of eccentrically loaded rectangular concrete-filled double steel tubular columns

机译:偏心装载矩形混凝土填充双钢管柱的实验和数值研究

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Rectangular concrete-filled double steel tubular (CFDST) columns have increasingly been utilized in high-rise buildings to support heavy loads. However, the responses of eccentrically loaded rectangular CFDST short columns have rarely been studied. This paper reports experimental and numerical investigations into the behavior of rectangular thin-walled short CFDST columns composed of a rectangular inner steel tube loaded eccentrically. Tests on rectangular and square CFDST short columns under eccentric loading and axial loading were carried out to examine their responses to various design parameters, including the cross-sectional dimensions, loading eccentricity, and width-to-thiclmess ratios of the external and internal tubes. The experimental program and results are described. A mathematical model underlying the theory of fiber elements is developed for simulating the moment-curvature responses as well as axial load-moment interaction envelopes of short CFDST columns. The computational model explicitly incorporates the experimentally observed failure mode of the progressive local buckling of the outer thin-walled rectangular steel tube. A computer simulation procedure is proposed for capturing the nonlinear behavior of short CFDST columns loaded eccentrically together with efficient solution algorithms that implement the inverse quadratic method for solving nonlinear equations. The experimental verification of the computer modeling technique is undertaken. The verified modeling technique is utilized to ascertain the significance of various design parameters on the structural behavior of CFDST columns made of rectangular thin-walled sections. It is confirmed that the computer model developed is capable of predicting well the experimentally observed responses of CFDST short columns. (C) 2020 Elsevier Ltd. All rights reserved.
机译:矩形混凝土填充双钢管(CFDST)柱越来越多地用于高层建筑,以支持重载。然而,很少研究偏心加载的矩形CFDST短柱的响应。本文将实验性和数值调查报告成矩形内钢管组成的矩形薄壁短CFDST柱的行为,偏心式围钢管组成。对偏心装载和轴向负载下的矩形和方形CFDST短柱的测试,以检查它们对各种设计参数的响应,包括外部和内部管的横截面尺寸,装载偏心和宽度达到的矩形比。描述了实验程序和结果。开发了纤维元件理论的基础的数学模型,用于模拟短曲率响应的力矩曲率响应以及短CFDST柱的轴向载荷力矩相互作用。计算模型明确地结合了外薄壁矩形钢管的逐步局部屈曲的实验观察失效模式。提出了一种计算机模拟过程,用于捕获偏心的短CFDST列的非线性行为以及实现求解非线性方程的逆二次方法的有效解决方案算法。进行了计算机建模技术的实验验证。验证的建模技术用于确定各种设计参数对由矩形薄壁部分制成的CFDST柱的结构行为的意义。确认,开发的计算机模型能够预测井的实验观察到的CFDST短柱的反应。 (c)2020 elestvier有限公司保留所有权利。

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