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The Experimental Studies on Behavior of Ultrahigh-Performance Concrete Confined by Hybrid Fiber-Reinforced Polymer Tubes

机译:杂交纤维增强聚合物管掺入超高性能混凝土行为的实验研究

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摘要

This paper conducts axial compression test of ultrahigh performance concrete- (UHPC-) filled hybrid FRP (HFRP) tubes, using the alternating hybrid technology to improve the deformation capacity of FRP tube and measure the axial compressive responses of ultimate strength, strains, and stress-strain curve of confined specimens. The test results show that the local rupture of HFRP tubes did not lead to explosive failure of UHPC cylinder, and its ductility is better than that of UHPC confined by only one type of FRP tube; HFRP tube can effectively improve the compressive strength and ultimate strain of UHPC specimens; the stress-strain curves divide into three distinct regions: linear phase, transition phase, and linear strengthening phase. None of the models provided a reasonable prediction for strength and strain of HFRP-confined UHPC specimen; therefore, a new ultimate strength and strain perdition model considering the confinement effectiveness of different hybrid FRP series was proposed. The new proposed model presented the best fitting results. The stress-strain responses predicted by the existing models are all below the experimental curves; therefore, a new three-stage constitutive model was proposed, which relatively fits the test curves better than the existing models.
机译:本文采用交替的混合动力技术进行了超高性能混凝土(UHPC-)填充混合动力FRP(HFRP)管的轴向压缩试验,以提高FRP管的变形容量,并测量最终强度,菌株和应力的轴向压缩响应狭窄标本的曲线。测试结果表明,HFRP管的局部破裂不会导致UHPC气缸的爆炸性失效,并且其延展性优于仅由一种类型的FRP管局限于UHPC的延展性; HFRP管可以有效地提高UHPC标本的抗压强度和终极菌株;应力 - 应变曲线分为三个不同的区域:线性相位,过渡相和线性强化相。没有任何模型为HFRP限制UHPC标本的强度和菌株提供了合理的预测;因此,提出了一种新的终极强度和应变终止模型,考虑了不同杂交FRP系列的监禁效果。新的拟议模型呈现了最佳拟合结果。现有模型预测的应力应变响应均在实验曲线以下;因此,提出了一种新的三阶段本构模型,比现有模型更适合测试曲线。

著录项

  • 作者

    Zong-cai Deng; Jiu-ling Qu;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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