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Precast tunnel segments for metro tunnel lining: A hybrid reinforcement solution using macro-synthetic fibers

机译:地铁隧道衬砌的预制隧道分段:使用宏观合成纤维的混合加固解决方案

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摘要

The addition of fibers has been proven successful to simplify reinforcement in precast tunnel segments, allowing as a function of both segment typology and fiber reinforced concrete (FRC) toughness a total or partial replacement of the conventional reinforcement. Results from an experimental research aimed at comparing the structural behavior of segments made with conventional (only rebars, RC) or hybrid (rebars + fibers) reinforcement are presented. The experimental program consisted of flexural and point load tests (which reproduces the jack actions during TBM operations) carried out on four large-scale precast tunnel segments representative of a metro tunnel lining characterized by an internal diameter of 5.80 m and a thickness of 0.30 m. The main goal of the experimental program was to evaluate the possibility of using macro-synthetic polypropylene fibers (Polypropylene Fiber Reinforced Concrete, PFRC) in combination with a lower amount of conventional rebars (optimized reinforcement, RCO) for guaranteeing the required segment performance. Experimental results indicate that macro-synthetic fibers may be very effective in combination with conventional rebars to withstand the main stresses that arise in a segment both at initial and final phases, proving that the adoption of hybrid reinforcement solution using macro-synthetic fiber is possible for metro tunnel lining.
机译:事实证明,添加纤维可以成功简化预制隧道管段的钢筋,从而根据管段类型和纤维增强混凝土(FRC)的韧性,完全或部分替代常规钢筋。提出了一项实验研究的结果,旨在比较用常规(仅钢筋,RC)或混合(钢筋+纤维)增强材料制成的节段的结构性能。该实验程序包括在四个大型预制隧道段上进行的弯曲和点载荷测试(再现了TBM操作期间的千斤顶动作),这些隧道段代表了地铁隧道衬砌,其内径为5.80 m,厚度为0.30 m 。该实验程序的主要目标是评估使用宏观合成聚丙烯纤维(聚丙烯纤维增强混凝土,PFRC)与少量传统钢筋(优化钢筋,RCO)的组合以确保所需分段性能的可能性。实验结果表明,宏观合成纤维与常规钢筋结合使用,可以承受初始阶段和最终阶段在一个段中产生的主要应力,这证明采用宏观合成纤维的混合增强解决方案可能是有效的。地铁隧道衬砌。

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