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Mechanical Properties of Nano SiO2 and Carbon Fiber Reinforced Concrete after Exposure to High Temperatures

机译:纳米SiO2和碳纤维增强混凝土的高温力学性能。

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摘要

This study presents the key mechanical and residual properties after high-temperature of different Nano SiO carbon fiber-reinforced concrete (NSCFRC) mixtures. A total of seven NSCFRC mixtures incorporating 0%–0.35% of carbon fiber by volume of concrete and 0%–2% Nano SiO by weight of the binder were studied. The key mechanical properties such as compressive strength, tensile strength, and flexural strength of NSCFRC with 0.25% carbon fiber and 1% NS were 6.8%, 20.3%, and 11.7% higher than PC (0% CFs, 0% NS), respectively. Scanning Electron Microscopy (SEM) shows that Nano SiO reduced the internal porosity and increased the compactness of the concrete matrix. Furthermore, the experimental result demonstrates that NSCFRC can improve the mechanical properties of concrete after high-temperature and equations were obtained to describe the evolution of residual properties at elevated temperatures. Results suggested that the effect of carbon fibers on the residual properties of concrete after high-temperature is less than steel fiber and polypropylene fiber. It was also indicated that adding appropriate Nano SiO to concrete is an effective means to improve the residual performance after high-temperature.
机译:这项研究提出了不同的纳米SiO碳纤维增强混凝土(NSCFRC)混合物在高温下的关键力学性能和残余性能。总共研究了7种NSCFRC混合物,其中掺入了按体积计0%–0.35%的碳纤维和按重量计0%–2%的纳米SiO。含0.25%碳纤维和1%NS的NSCFRC的关键机械性能(例如抗压强度,拉伸强度和抗弯强度)分别比PC(0%CFs,0%NS)高6.8%,20.3%和11.7%。 。扫描电子显微镜(SEM)表明,纳米SiO降低了内部孔隙率并提高了混凝土基体的致密性。此外,实验结果表明,NSCFRC可以改善高温后的混凝土力学性能,并获得了描述高温下残余性能演变的方程。结果表明,碳纤维对高温后混凝土残余性能的影响小于钢纤维和聚丙烯纤维。还表明,向混凝土中添加适当的纳米SiO是改善高温后残余性能的有效手段。

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