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The tensile performance of FRP bars embedded in concrete under elevated temperatures

机译:高温下嵌在混凝土中的FRP筋的拉伸性能

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In this research, the mechanical properties of glass and carbon fiber reinforced polymer (FRP) bars with epoxy resin matrices embedded in concrete were investigated under an extensive range of elevated temperatures (i.e., 25-800 degrees C). Embedded FRP bars with various bar diameters were studied in order to determine bar diameter influence on the results. In addition, analysis of variance (ANOVA) was performed on the experimental results to investigate the contribution of exposure temperature and bar diameter to the tensile behavior of embedded in concrete FRP bars at elevated temperatures. The results show that the tensile strength of embedded FRP bars generally decreases with increasing temperature; however, the rate of decrease of the tensile strength varies within different temperature ranges due to different failure modes and states of the FRP material. The influence of the bar diameter was not significant in the tensile behavior of embedded FRP bars at various elevated temperatures. However, the influence of the bar diameter increased within the temperature range of 150-500 degrees C compared to the temperatures lower than 150 degrees C and above 500 degrees C. The results also show that the concrete cover prevented direct heat and oxygen from reaching the bars; as a result, embedded FRP exhibited improved tensile performance at elevated temperatures compared to bare bars that were directly exposed to heat. Two Bayesian regression models were developed for predicting the tensile performance of embedded GFRP and CFRP bars at elevated temperatures. The models have been shown to be in good agreement with the experimental results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了在宽范围的高温(即25-800摄氏度)下,将环氧树脂基体嵌入玻璃纤维和碳纤维增强聚合物(FRP)钢筋的机械性能。为了确定钢筋直径对结果的影响,研究了具有各种钢筋直径的嵌入式FRP钢筋。此外,对实验结果进行方差分析(ANOVA),以研究暴露温度和钢筋直径对高温下埋入混凝土FRP钢筋的拉伸性能的影响。结果表明,嵌入的FRP筋的抗拉强度通常随温度的升高而降低;然而,由于FRP材料的不同破坏模式和状态,拉伸强度的降低速率在不同温度范围内变化。棒直径的影响在各种高温下对嵌入式FRP棒的拉伸性能影响不大。但是,与低于150摄氏度和高于500摄氏度的温度相比,在150-500摄氏度的温度范围内,钢筋直径的影响有所增加。结果还表明,混凝土覆盖层可防止直接的热量和氧气到达表面。酒吧;结果,与直接暴露于热的裸棒相比,嵌入式FRP在高温下表现出改善的拉伸性能。开发了两个贝叶斯回归模型来预测嵌入的GFRP和CFRP钢筋在高温下的拉伸性能。该模型已被证明与实验结果非常吻合。 (C)2019 Elsevier Ltd.保留所有权利。

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