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Compressive performance of steel fiber-reinforced rubberized concrete core detached from heated CFST

机译:从加热的CFST中分离出的钢纤维增强的橡胶混凝土芯的抗压性能

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摘要

In this study, the compressive behavior of concrete cores detached from the high-strength concrete-filled steel tube (CFST) members reinforced with steel fibers and containing crumb tire rubber was investigated experimentally after exposure to elevated temperatures. The test variables included the diameter-tothickness ratio of the steel tube, volume content of crumb rubber replacing natural sand, volume fraction of steel fibers, and temperature. After the exposure of the CFST specimens to the elevated temperatures and subsequently removing the steel tubes, the detached concrete core was subjected to the axial compression test, and the parameters of compressive strength, modulus of elasticity, strain at peak stress, and weight loss, stress-strain relationship together with the ultrasonic pulse velocity, visual appearance, and failure mode were evaluated. Using the experimental results, expressions were developed to predict the mechanical properties of the concrete core at elevated temperatures taking into account the steel tube wall thickness. The findings indicated that increasing the thickness of the steel tube had a greater damaging effect on the heated concrete core, while in the fiber-reinforced specimens, this damaging effect was lower. Moreover, the addition of crumb rubber to the concrete mix as the natural sand replacement degraded the mechanical properties of the heated and unheated concrete core. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,暴露于高温后,通过实验研究了从用钢纤维增强并包含碎屑轮胎橡胶的高强度钢管混凝土构件中分离的混凝土芯的抗压性能。测试变量包括钢管的直径/厚度比,替代天然沙子的碎屑橡胶的体积含量,钢管的体积分数和温度。将CFST试样暴露在高温下并随后除去钢管后,对脱离的混凝土芯进行轴向压缩试验,并测试其抗压强度,弹性模量,峰值应力应变和失重的参数,评估应力-应变关系以及超声脉冲速度,外观和破坏模式。利用实验结果,考虑到钢管壁厚,开发了表达式来预测高温下混凝土芯的机械性能。结果表明,增加钢管的厚度对加热的混凝土芯有更大的破坏作用,而在纤维增强的试样中,这种破坏作用则较低。此外,随着天然砂的替代,向混凝土混合物中添加碎屑橡胶会降低加热和未加热的混凝土芯的机械性能。 (C)2019 Elsevier Ltd.保留所有权利。

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