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Experimental Study of the Effect of High Service Temperature on the Flexural Performance of Near-Surface Mounted (NSM) Carbon Fiber-Reinforced Polymer (CFRP)-Strengthened Concrete Beams

机译:高服务温度对近表面(NSM)碳纤维增强聚合物(CFRP) - 复制混凝土梁弯曲性能影响的实验研究

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摘要

This paper presents a study of the effect of high service temperature (near or beyond glass transition temperature (Tg) of structural epoxy adhesive) on the behavior of near-surface mounted (NSM) carbon fiber-reinforced polymer (CFRP)-strengthened reinforced concrete (RC) beams. The study includes experimental work as well as analytical and numerical analysis. To this end, fourteen beams have been tested up to failure in two different series. In series 1, specimens with three different CFRP areas have been tested at two different temperatures (i.e., 20 and 40 °C). In series 2, and with the aim of evaluating the effect of higher temperatures, only one CFRP area was tested under four different temperatures (i.e., 20, 60, 70, and 85 °C). Experimental results are evaluated in terms of load–deflections, failure modes, and bond performance. Furthermore, the experimental load–deflection curves are satisfactorily compared to both analytical predictions and finite element (FE) numerical simulations. In both cases, shrinkage and temperature effects on the short-term response of flexural elements have been accounted for. No significant reduction in stiffness and ultimate load was observed for specimens being tested up to 60 °C (in the range of epoxy Tg), showing FRP rupture failure in all of them. For specimens under 70 and 85 °C, the failure mode changed from FRP rupture to FRP end debonding and concrete crushing, respectively.
机译:本文提出了高服务温度(近或除玻璃化转变温度(Tg)的近端氧化纤维粘合剂的影响)研究了近表面安装(NSM)碳纤维增强聚合物(CFRP) - 复活钢筋混凝土的行为的影响(RC)梁。该研究包括实验工作以及分析和数值分析。为此,已经测试了十四个光束以两种不同的系列失效。在串联1中,在两个不同的温度(即20和40°C)下测试了具有三个不同CFRP区域的标本。在串联2中,目的在于评估较高温度的效果,在四个不同的温度下仅测试一个CFRP区域(即20,60,70和85℃)。在负载偏转,故障模式和粘合性能方面评估了实验结果。此外,与分析预测和有限元(FE)数值模拟相比,实验载荷偏转曲线令人满意。在这两种情况下,已经考虑了对弯曲元件短期响应的收缩和温度效应。对于高达60℃(在环氧TG的范围内)的试样,观察到刚度和最终载荷的显着降低,显示所有这些试样。对于70和85°C下的标本,故障模式分别从FRP破裂变为FRP端借助和混凝土压碎。

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