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Study on the Model Test of the Antibreaking Effect of Fiber Reinforced Concrete Lining in Tunnel

机译:隧道纤维钢筋混凝土衬砌抗纤频效果的模型试验研究

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In order to study the antibreaking effect of the fiber reinforced concrete lining in the tunnel, this paper takes the a subway tunnel engineering project in F2-3 section of Jiujiawan fault as the research background and carries out the antibreaking model test of the fiber reinforced concrete lining in the active fault zone of high earthquake intensity. The results show that the antibreaking effect of the principle stress and the longitudinal strain of the fiber reinforced concrete lining are 30%~40% and 80%~90%, respectively, and the minimum value of the structural safety factor is increased by 4~5 times. The antibreaking effect of hybrid fiber reinforced concrete lining is better than that of steel fiber reinforced concrete lining. The safety of steel polypropylene hybrid fiber reinforced concrete tunnel lining is the highest, and its minimum structural safety factor is 1.62. In the aspect of improving the antibreaking effect of the tunnel, the toughening effect of fiber reinforced concrete is stronger than that of reinforcing. The research results are of great significance to improve the antibreaking effect of tunnels in active fault areas with high earthquake intensity.
机译:为了研究隧道纤维钢筋混凝土衬砌的抗衡爆效果,本文采用了九家湾故障F2-3段的地铁隧道工程项目作为研究背景,进行了纤维钢筋混凝土的抗衡爆模型试验衬里在高地震强度的主动故障区。结果表明,纤维钢筋混凝土衬里的原理应力和纵向应变的抗衡爆效应分别为30%〜40%和80%〜90%,结构安全系数的最小值增加4〜 5次。杂交纤维钢筋混凝土衬砌的抗颤烧效果优于钢纤维钢筋混凝土衬砌。钢聚丙烯杂交纤维钢筋混凝土隧道衬里的安全性最高,其最小结构安全系数为1.62。在提高隧道的抗纤维效果的方面,纤维增强混凝土的增韧效果比增强效果强。研究结果具有重要意义,可以提高具有高地震强度的主动断层区域中隧道的抗刺桥效果。

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