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Behavior of steel fiber-reinforced high-strength concrete-filled FRP tube columns under axial compression

机译:钢纤维增强高强混凝土FRP管柱的轴向受压性能

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This paper presents the results of the first-ever experimental study on the axial compressive behavior of steel fiber reinforced high-strength concrete (SFRHSC)-filled FRP tubes. A total of 27 circular unreinforced and steel fiber reinforced high-strength concrete FRP tubes (SFRHSCFFTs) were tested under axial compression. The effects of steel fiber parameters, including fiber shape, fiber aspect ratio and fiber volume fraction were examined. Concrete type was also investigated as a parameter, where two different types of concrete, including a conventional HSC and slurry infiltrated fiber concrete (SIFCON) were considered. The results indicate that both SFRHSCFFTs and SIFCON-filled FRP tubes (SIFCONFFTs) exhibit highly ductile compressive behavior. The results also indicate that the axial stress-strain behavior of CFFTs is influenced by the presence and amount of internal steel fibers, with particularly significant influences noted on the FRP hoop rupture strains and post-peak strength losses. It is found that fiber volume fraction significantly affects the compressive behavior of CFFTs. Concrete type, fiber shape and fiber aspect ratio also have some, but less significant, influence on the behavior of CFFTs. It is observed that the compressive strength and ultimate strain of CFFI's increases with an increase in fiber volume fraction or a decrease in fiber aspect ratio. It is also observed that CFFTs reinforced with hooked end steel fibers exhibit improved compressive behavior compared to the companion CFFTs reinforced with crimped fibers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了首次对钢纤维增强高强混凝土(SFRHSC)填充的FRP管的轴向压缩性能进行实验研究的结果。在轴向压缩下,总共测试了27条圆形的非增强和钢纤维增强的高强度混凝土FRP管(SFRHSCFFT)。研究了钢纤维参数的影响,包括纤维形状,纤维长径比和纤维体积分数。还研究了混凝土类型作为参数,其中考虑了两种不同类型的混凝土,包括常规的HSC和浆状渗透纤维混凝土(SIFCON)。结果表明,SFRHSCFFT和SIFCON填充的FRP管(SIFCONFFT)均显示出高延性的压缩行为。结果还表明,CFFT的轴向应力-应变行为受内部钢纤维的存在和数量的影响,其中对FRP箍断裂应变和峰后强度损失的影响特别明显。发现纤维体积分数显着影响CFFT的压缩行为。混凝土类型,纤维形状和纤维长径比对CFFT的行为也有一些但不太重要的影响。可以看出,CFFI的抗压强度和极限应变随纤维体积分数的增加或纤维长径比的减小而增加。还观察到,与用卷曲纤维增强的配套CFFT相比,用钩形端部钢纤维增强的CFFT表现出改善的压缩性能。 (C)2015 Elsevier Ltd.保留所有权利。

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