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Structural performance of CFRP-strengthened concrete-filled stainless steel tubular short columns

机译:CFRP加强混凝土填充不锈钢管短柱的结构性能

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The use of concrete-filled stainless steel tubular (CFSST) members is relatively innovative and new. CFSST columns can be used for bridge piers, multi-story buildings and other supporting structures. However, a common mode of failure with these type of tubular composite columns is inelastic outward local buckling occurring at the column ends. Therefore, this paper presents the results of experimental, numerical and analytical investigations into the behavior of circular CFSST columns strengthened by carbon fiber reinforced polymer (CFRP) wrap and subjected to axial compression loading. The experimental investigation comprised three series of tests. The main variables tested were the diameter to thickness ratio of the stainless steel tube and the thickness of the CFRP wrap. 3D finite element models (FEMs) were developed for CFRP-wrapped CFSST columns using the ABAQUS software and were validated with experimental results. An extensive parametric study was carried out by using the validated FEMs. It was shown from the experimental and FEMs results that CFRP jacketing was highly effective in improving the axial load carrying capacity and axial shortening capacity of the CFSST columns. Finally, an analytical model based on the FE parametric study results was proposed to predict the axial load carrying capacity of the CFRP-wrapped CFSST columns.
机译:使用混凝土的不锈钢管状(CFSST)成员是相对创新性和新的。 CFSST列可用于桥接码头,多层建筑物和其他支持结构。然而,具有这些类型的管状复合柱的常见失效模式是在柱末端发生的无弹性向外局部屈曲。因此,本文介绍了通过碳纤维增强聚合物(CFRP)包装和轴向压缩负荷加强的圆形CFSST柱行为的实验,数值和分析研究的结果。实验研究包括三系列测试。测试的主要变量是不锈钢管的直径和CFRP包装的厚度。 3D使用ABAQUS软件为CFRP包装的CFSST列开发了有限元模型(FEMS),并用实验结果验证。通过使用经过验证的FEMS进行广泛的参数研究。从实验和有限元件中显示出CFRP护套在提高CFSST柱的轴向载荷承载能力和轴向缩短容量方面的实验和有限元素结果。最后,提出了一种基于Fe参数研究结果的分析模型,以预测CFRP包装的CFSST柱的轴向载荷承载能力。

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