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Structural performance of concrete-filled square steel tubular columns encased with Ⅰ-shaped CFRP under eccentric compression

机译:在偏心压缩下用Ⅰ形CFRP包装混凝土填充方形钢管柱的结构性能

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This study investigated behavior of concrete filled square steel tubular (CFSST) columns encased with I-shaped CFPR under eccentric compression. Full-scale eccentric compression tests were conducted on eighteen column specimens consisting of square steel tube, concrete, and an I-shaped CFRP profile. The test program considered effects of load eccentricity ratio and column slenderness ratio. The eccentrically loaded column behavior was investigated with respect to the mid-height deflection, load, and failure modes. The development and distribution of longitudinal strain and neural axis for the column were also studied. Finite element models were developed and validated against tested results to further analyze the load-transferring mechanism of the composite column and perform detailed parametric studies. The results indicated that the CFSST column encased with I-shaped CFRP behaved in a ductile manner with the improved capacity and increased stability. Finally, design equations were developed using tested and simulated data to estimate ultimate bearing capacity of the CFSST column encased with I-shaped CFRP when subjected to eccentric compression. The predicted column capacities using the design equations matched well with the tested and simulated capacities.
机译:本研究研究了在偏心压缩下用I形CFPR包装的混凝土填充方形钢管(CFSST)柱的行为。全尺寸偏心压缩测试是在由方形钢管,混凝土和I形CFRP型材组成的18个柱试样上进行的。测试程序被认为是负载偏心比和柱细长比的影响。对中高偏转,负荷和故障模式研究了偏心加载的柱行为。还研究了柱纵向应变和神经轴的开发和分布。开发有限元模型并验证测试结果,以进一步分析复合柱的负载转移机制并进行详细的参数研究。结果表明,用I形CFRP包封的CFSST柱以延性方式表现出具有改善的容量和增加的稳定性。最后,使用测试和模拟数据开发了设计方程,以估计当经过偏心压缩时用I形CFRP包装的CFSST列的最终承载能力。使用设计方程的预测柱容量匹配良好的测试和模拟能力。

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