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Impact of elevated temperature and anchored grooves on the shear behavior of reinforced concrete beams strengthened with CFRP composites

机译:升高温度和锚固槽对CFRP复合材料加固钢筋混凝土梁剪切行为的影响

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Exposure of concrete structures to elevated temperatures causes a severe deterioration because of decomposition of cement hydration products, generation of vapor pressure, and the inhomogeneous volume changes of concrete's ingredients and beyond a temperature of 500?°C. The most Retrieval the structural performance of severely heat-damaged structural concrete members would be most significantly achieved using carbon fiber-reinforced polymer (CFRP) composite materials. Nevertheless, debonding and anchoring problems remain a challenge for the success of this technique. In this study, an innovative application was implemented in which CFRP strips were integrated as external shear reinforcement for reinforced concrete (RC) beams by using the groove technique. The intent was to assess the CFRP strips' contribution to the shear strength and thus evaluate the effectiveness of using them as main or supplemental shear reinforcement before and after exposure to elevated temperature. The investigated parameters include the area and number of layers of CFRP strips and different elevated temperatures. By demonstrating an outstanding structural performance with significant enhancement in the ultimate strength, ultimate deflection, stiffness, and toughness, this paper's findings strongly attest that CFRP strips can be effectively utilized as external shear reinforcement in reinforced concrete beams exposed to elevated temperatures. New guideline and proposed empirical model are developed to predict the damage level and shear strength of heated damaged RC beams externally reinforced with CFRP composites considering the influence of the number of CFRP strips and elevated temperature as groove technique.
机译:混凝土结构暴露于升高的温度,因为水泥水合产物的分解,蒸气压的产生和混凝土成分的不均匀体积变化以及超过500Ω·℃的温度,产生严重劣化。使用碳纤维增强聚合物(CFRP)复合材料,最显着地实现了最严重的热损伤结构混凝土构件的结构性能。尽管如此,剥夺和锚定问题仍然是这种技术成功的挑战。在这项研究中,实施了一种创新应用,其中通过使用沟槽技术将CFRP条作为外部剪切增强作为钢筋混凝土(RC)梁集成。目的是评估CFRP条带对剪切强度的贡献,从而评估在暴露于升高的温度之前和之后使用它们作为主要或补充剪切增强的有效性。研究的参数包括CFRP条带的面积和数量和不同的升高温度。通过展示具有显着增强的突出结构性能,终极偏转,刚度和韧性显着提高,本文的研究结果强烈证明了CFRP条带作为暴露于升高温度的钢筋混凝土梁中的外部剪切增强。开发了新的指南和提出的实证模型,以预测使用CFRP复合材料的加热损坏RC光束的损伤水平和剪切强度,考虑到CFRP条的数量和升高温度作为凹槽技术的影响。

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