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Experimental and analytical studies on CFRP strengthened circular thin- walled CFST stub columns under eccentric compression

机译:偏心受压下CFRP加固圆形薄壁CFST短管柱的试验和分析研究

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摘要

Carbon fiber reinforced polymer (CFRP) strengthened concrete-filled thin-walled steel tubular (CFST) column can improve its load carrying capacity and resolve local bugles or corrosion of thin-walled steel tube. However, little attention to CFRP strengthened CFST columns has been paid. This paper reported an experimental and numerical analysis on eccentric compressive behavior of circular CFST stub columns partially-wrapped by CFRP strips. A series of circular composite columns, including nine CFRP strengthened CFST stub columns and one bare CFST stub column, were tested subjected to eccentric compression. Moreover, a nonlinear finite element (FE) modeling in considering contact interactions of the composite columns was developed and verified by the test results in terms of eccentric load (N) - longitudinal shortening (8) curves and failure patterns. Then, the influence of extensive parameters on the eccentric compressive behavior of CFRP strengthened circular CFST columns was also evaluated. Meanwhile, a simplified empirical method on the eccentrically-loaded stub composite columns was proposed on the basis of unified theory. The experimental and analytical data indicated that the eccentric compressive strength of CFRP strengthened circular CFST stub column was obviously influenced by load eccentricity, CFRP confinement factor, steel strength, core concrete strength and CFRP strength. The proposed simplified empirical formulas may provide a considerable approach for designing this type of composite structures in engineering practice.
机译:碳纤维增强聚合物(CFRP)增强混凝土填充薄壁钢管(CFST)柱可以提高其承载能力,并解决薄壁钢管的局部号角或腐蚀。但是,对CFRP增强CFST柱的关注很少。本文报道了部分用CFRP条包裹的圆形CFST短柱的偏心压缩特性的实验和数值分析。测试了一系列圆形复合柱,其中包括九根CFRP加固CFST短柱和一根裸CFST短柱。此外,开发了考虑复合柱接触相互作用的非线性有限元(FE)模型,并通过偏心载荷(N)-纵向缩短(8)曲线和破坏模式的测试结果进行了验证。然后,还评估了广泛的参数对CFRP加固圆形CFST柱的偏心压缩性能的影响。同时,在统一理论的基础上,提出了偏心短管桩复合柱的简化经验方法。实验和分析数据表明,CFRP加固圆形CFST短柱的偏心抗压强度受荷载偏心率,CFRP约束因子,钢强度,芯混凝土强度和CFRP强度的影响明显。所提出的简化的经验公式可以为工程实践中设计这种类型的复合结构提供一种可观的方法。

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