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Experimental Research on Concrete-Filled GFRP Tubes and GFRP-Steel Composite Tubes under Axial Compressive Load

机译:轴向压缩载荷下混凝土GFRP管和GFRP - 钢复合管的实验研究

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Axial compression experiments of eighteen concrete-filled GFRP tube (CFFT) and concrete-filled GFRP reinforced steel tube (CFFST) specimens in total have been carried out to study their mechanical behaviors. Experimental results show that, GFRP tubes with different filament-wound angles could enhance the strength and ductility of core concrete at different levels. Fibers with hoop directions provide the best confinement and enhance the ultimate strength up to 266% comparing with unconfmed concrete columns. Fibers with ±45° winding angles have minor effects on bearing capacity, but greatly improve the ductility of concrete columns. Compared with CFST columns, GFRP reinforced CFST columns with hoop direction fibers increase the bearing capacity of 35.0%, and the fibers along 45° winding angles could enhance by 17.5%. The mechanical behavior and the failure modes of the six experimental group specimens are also discussed in this paper.
机译:已经进行了十八件混凝土GFRP管(CFFT)和混凝土填充GFRP增强钢管(CFFST)标本的轴向压缩实验,以研究其机械行为。实验结果表明,具有不同丝缠绕角度的GFRP管可以提高核心混凝土在不同水平的强度和延展性。具有箍方向的纤维提供了最佳的禁闭,并提高了与无限制的混凝土柱比较的最终强度高达266%。具有±45°卷积角的纤维对承载能力有次要影响,但大大提高了混凝土柱的延展性。与CFST柱相比,GFRP增强CFST柱,带环纤维的轴承容量增加了35.0%,沿45°绕组角的纤维可以增强17.5%。本文还讨论了六种实验组标本的力学行为和失效模式。

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