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Compressive strength of concrete-filled stainless steel tube stub columns

机译:钢管混凝土短柱的抗压强度

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Concrete-filled stainless steel tube (CFSST) members combine the advantages of the outstanding corrosion resistance of stainless steel and the composite action in concrete-filled steel tube (CFST) system. However, accurate calculation methods for this type of structures are currently limited and research into CFSST members with hotrolled stainless steel tubes are not available. In this paper, the compressive behavior of CFSST stub columns has been investigated through a comprehensive experimental and numerical program. A total of 18 specimens, including 9 concrete-filled austenitic stainless steel tube (austenitic CFSST) and 9 concrete-filled duplex stainless steel tube (duplex CFSST) stub columns, were tested under compression. The varying parameters in the experimental study included the thickness of the stainless steel tube and the strength of the concrete. Finite element (FE) models duplicating the tests were developed, which were subsequently used in parametric study to generate a wider range of data and to investigate the influence of the tube thickness and concrete strength on the ultimate capacities of CFSST stub columns. Based on the generated data, it was found that the current European and Chinese standards for concrete-filled carbon steel tubes underestimate the resistances of CFSST members significantly. To this end, new calculation methods developed based on these European and Chinese design rules have been proposed, which were shown to provide improved strength predictions for both the austenitic and duplex CFSST members.
机译:钢管混凝土(CFSST)构件结合了不锈钢出色的耐腐蚀性和钢管混凝土(CFST)系统中的复合作用的优点。但是,目前这种类型的结构的精确计算方法受到限制,并且尚无法研究具有热轧不锈钢管的CFSST构件。本文通过全面的实验和数值程序研究了CFSST短柱的压缩行为。总共18个试样在压缩条件下进行了测试,包括9根混凝土填充的奥氏体不锈钢管(奥氏体CFSST)和9根混凝土填充的双相不锈钢管(双相CFSST)。实验研究中的各种参数包括不锈钢管的厚度和混凝土的强度。开发了与测试重复的有限元(FE)模型,随后将其用于参数研究,以生成更广泛的数据,并研究管厚度和混凝土强度对CFSST短柱最大极限承载力的影响。根据生成的数据,发现当前的欧洲和中国的混凝土填充碳钢管标准显着低估了CFSST构件的抗力。为此,已经提出了基于这些欧洲和中国设计规则开发的新计算方法,这些计算方法显示出可为奥氏体和双相CFSST构件提供改进的强度预测。

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