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Flexural behaviour of concrete-filled stainless steel SHS and RHS tubes strengthened by CFRP

机译:CFRP加固混凝土SHS和RHS不锈钢管的抗弯性能

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摘要

This paper presents the experimental and numerical investigations on concrete-filled stainless steel square and rectangular hollow section (SHS and RHS) tubes subjected to in-plane bending. A total of 32 specimens were tested, in which one fourth of test specimens were unstrengthened for comparison. The ultimate strengths, failure modes, flexural stiffness, ductility and longitudinal strains of test specimens are reported. The corresponding finite element analysis (FEA) was also performed and calibrated against the test results. An extensive parametric study was carried out by using the verified finite element model to investigate the strengthening effect of CFRP on the flexural behaviour of concrete-filled stainless steel SHS and RHS tubes. It is shown from the comparison that the strengthening effect of CFRP was improved with the increase of the 13 value. Whereas, the ductility ratio was greatly deteriorated. Furthermore, the secant stiffness at 0.6M(u) was recommended to be the flexural stiffness of concrete-filled stainless steel SHS and RHS tubes strengthened by CFRP in the practical applications. On the other hand, the flexural strength and flexural stiffness of concrete-filled stainless steel SHS and RHS tubes were increased with the increase of interface friction coefficient between stainless steel tube and concrete up to 0.6. The design formulae are also proposed for the flexural strengths and flexural stiffness of concrete-filled stainless steel SHS and RHS tubes strengthened by CFRP based on the current design rules for concrete-filled steel tubes by further considering the flexural strengths and flexural stiffness of the CFRP, which were verified to be accurate by the finite element analysis results.
机译:本文介绍了承受平面内弯曲的钢管混凝土方形和矩形空心截面(SHS和RHS)管的实验和数值研究。总共测试了32个样本,其中有四分之一的样本没有进行比较。报告了试样的极限强度,破坏模式,弯曲刚度,延展性和纵向应变。还执行了相应的有限元分析(FEA),并根据测试结果进行了校准。通过使用经过验证的有限元模型进行了广泛的参数研究,以研究CFRP对不锈钢SHS和RHS钢管混凝土抗弯性能的增强作用。通过比较可知,CFRP的强化效果随着13值的增加而提高。而延展率大大降低。此外,在实际应用中,建议割线刚度在0.6M(u)时应为CFRP增强的混凝土SHS和RHS钢管的弯曲刚度。另一方面,随着不锈钢管与混凝土之间的界面摩擦系数增加到0.6,填充混凝土的不锈钢SHS和RHS管的抗弯强度和抗弯刚度增加。根据现行的钢管混凝土设计规则,进一步考虑CFRP的抗弯强度和抗弯刚度,提出了针对CFRP加固的不锈钢SHS和RHS钢管的抗弯强度和抗弯刚度的设计公式。 ,经有限元分析结果验证是准确的。

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