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首页> 外文期刊>Construction and Building Materials >Bond-slip behavior between ultra-high-performance concrete and carbon fiber reinforced polymer bars using a pull-out test and numerical modelling
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Bond-slip behavior between ultra-high-performance concrete and carbon fiber reinforced polymer bars using a pull-out test and numerical modelling

机译:超高性能混凝土和碳纤维增强聚合物条之间使用拉出试验和数值模拟的粘结滑移行为

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In the present study, the impact of carbon nanotube (CNT) on the bonding behavior of carbon fiber reinforced polymer (CFRP) and steel rebars in carbon nanotube reinforced ultra-high-performance concrete was studied numerically and experimentally. The finite element (FE) analyses, was used to numerical modelling of the pull-out tests. Mechanical properties of the samples, were extracted from the experimental tests performed on standard samples with different quantities of CNT. In order to consider more realistic assumptions, the interaction and bond between concrete and rebar was simulated using cohesive zone modelling method, whose parameters were obtained by model-updating between the FE models and the experimental pull-out test results. The three-dimensional FE model was validated with the experimental pull-out tests. Then, the effect of the diameter and material of rebar as well as the contents of CNT on the pull-out behavior of bar and UHPC were considered. The results show that for 0.02 wt% CNT the maximum pull-out stress of CFRP rebar with a diameter of 12 mm and 16 mm increased by 176% and 407% compared to the control sample (UHPC without CNT), respectively; also, this increase for steel rebars was 5.7 times and 1.7 times, respectively. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本研究中,在数值和实验上研究了碳纳米管(CNT)对碳纤维增强聚合物(CFRP)和钢筋钢筋的粘接性能和钢钢筋的影响。有限元(Fe)分析用于拉出试验的数值模拟。样品的机械性能从用不同量的CNT上对标准样品进行的实验试验中提取。为了考虑更现实的假设,使用凝聚区建模方法模拟混凝土和钢筋之间的相互作用和粘合,其参数通过FE模型和实验拔出测试结果进行模型更新而获得。通过实验拉出测试验证了三维Fe模型。然后,考虑了钢筋直径和材料的效果以及CNT的内容在棒和UHPC的拉出行为上。结果表明,对于0.02wt%CNT,CFRP钢筋的最大拉出应力分别增加了直径为12 mm和16mm的直径增加176%和407%,分别增加了176%和407%;此外,钢结构的这种增加分别为5.7倍,1.7倍。 (c)2020 elestvier有限公司保留所有权利。

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