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首页> 外文期刊>Journal of Constructional Steel Research >Experimental study of concrete filled cold-formed steel tubular stub columns
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Experimental study of concrete filled cold-formed steel tubular stub columns

机译:冷弯钢管混凝土短柱的试验研究

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An experimental programme was conducted to investigate the compressive behaviour of concrete-filled cold formed steel tubular (CFCFST) stub columns with thicker tubes. A total of 30 CFCFST stub columns were tested. The cold-formed square hollow section (SHS) tubes included unstiffened sections and longitudinally inner-stiffened sections using different stiffening methods. Two tubular thicknesses of 6 mm and 10 mm were considered. The overall nominal dimension of the steel section was 200 x 200 mm, and the length of the stub columns was 600 mm. Normal concrete and self-consolidating concrete with a nominal compressive strength of 30 MPa were used to fill the cold-formed SHS steel tubes. The effects of the stiffeners on the rigidity, ductility, failure mode and average sectional strength of the CFCFST specimens were examined. The measured strengths of the CFCFST specimens were also compared with the predicted capacities using methods in various codes including AISC, BS5400, EC4, and DBJ and from a finite element (FE) analysis. Results demonstrate that the inner stiffeners affect the deformability, failure mode and overall strength of the stub columns with the 6 mm-thick tubes more significantly. The DBJ code method is comparatively the best in predicting the strength capacity. Using the validated FE model, an extended analysis has been conducted and this has provided further insight into the mechanical behaviour of the CFCFST specimens. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行了一个实验程序,以研究具有较厚管的混凝土填充冷弯钢管(CFCFST)短柱的压缩性能。总共测试了30个CFCFST短管柱。冷成型方形中空截面(SHS)管包括未加强截面和使用不同加强方法的纵向内部加强截面。考虑了两个管状厚度分别为6 mm和10 mm。钢截面的整体标称尺寸为200 x 200 mm,短柱的长度为600 mm。标称抗压强度为30 MPa的普通混凝土和自固结混凝土用于填充冷弯SHS钢管。检查了加劲肋对CFCFST试样的刚度,延展性,破坏模式和平均截面强度的影响。还使用AISC,BS5400,EC4和DBJ等各种代码中的方法,并通过有限元(FE)分析,将CFCFST标本的测量强度与预测容量进行了比较。结果表明,内部加强筋对直径为6 mm的短管的变形能力,破坏模式和整体强度的影响更大。在预测强度能力方面,DBJ代码方法相对最好。使用经过验证的有限元模型,进行了扩展的分析,这进一步提供了对CFCFST样品力学性能的了解。 (C)2017 Elsevier Ltd.保留所有权利。

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