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Compressive behavior of concrete-filled GFRP tubular stub columns after being subjected to freeze-thaw cycles

机译:经受冻融循环后混凝土GFRP管状短柱柱的压缩行为

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摘要

This paper aims to investigate the mechanical properties of concrete-filled glass fiber reinforced plastic (GFRP) tubular stub columns after being subjected to freeze-thaw cycles (FTCs). A total of 72 concrete-filled GFRP tubular (CFGT) stub columns treated with different FTCs were tested under axial load. The ultimate capacity, initial stiffness, load-displacement curves, load-strain curves, and failure modes were obtained and analyzed. Test results indicated that the failure phenomena of the specimens under axial compression were similar, mainly including the fracturing of GFRP tube and crushing of core concrete. The FTCs, concrete strength and column height all had a significant influence on the failure modes of the specimens. The ultimate capacity and initial stiffness decreased evidently with the increase of the number of FTCs. By increasing the height of the column, the ultimate capacity and deformation capacity of square column after FTCs could be effectively improved. The change of ultimate capacity of the CFGT column after FTCs was the result of the combined effect of FTCs, concrete compressive strength and column height. Finally, the simplified formulas for calculating the ultimate capacity of CFGT stub columns after FTCs were proposed.
机译:本文旨在探讨混凝土玻璃纤维增​​强塑料(GFRP)管状短线柱的机械性能后进行冻融循环(FTC)。在轴向载荷下测试共72个用不同FTC处理的混凝土GFRP管状(CFGT)短柱。获得并分析了最终容量,初始刚度,负荷 - 位移曲线,负载 - 应变曲线和故障模式。测试结果表明,轴向压缩下标本的故障现象相似,主要包括GFRP管的压裂和芯混凝土的压碎。 FTCS,混凝土强度和柱高度都对样品的失效模式产生了重大影响。随着FTC的数量的增加,终极容量和初始刚度明显减少。通过增加柱的高度,可以有效地改善FTCS后方柱的极限容量和变形容量。 FTCS后CFGT柱的最终容量的变化是FTCS,混凝土抗压强度和柱高度效应的结果。最后,提出了用于计算FTCS后CFGT存根柱的最终容量的简化公式。

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