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Behaviour of FRC segments with GFRP cage under TBM thrust in presence of GAPs

机译:TBM在TBM推力下与GFRP笼子的FRC段的行为

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Due to their structural performance and durability, Fibre Reinforced Concrete (FRC) precast segments are now commonly used in major tunnelling applications around the world. The paper investigates the effects of irregular loading on the segments due to poor alignment, which can occur on the tunnel lining during construction as a result of the operation of the Tunnel Boring Machine (TBM). During construction, as the TBM progresses, defects on the tunnel lining can arise. Cracks can then be caused by improper load application by the TBM thrust jacks (due to uncorrected inclination or eccentricities). Further defects can be caused by non-uniform ring joints and this needs to be taken into account in the design and construction of the lining. Because the precast segments are not supported uniformly by the previous ring, they are subjected to a transient bending moment that can jeopardise their integrity and performance during both the excavation phase and service life. The proposed hybrid solution of FRC segments with Glass Fibre Reinforced Polymer (GFRP) reinforcement presented in this paper can overcome these situations, which cannot be satisfied with FRC-only segments, by means of an "elastic-return action" provided by the GFRP reinforcement. Two full-scale tests simulating the TBM thrust, for which irregular support conditions were taken into account, were carried out. Based on the obtained results, it is concluded that the proposed hybrid solution shows almost full recovery of the initial geometry with residual crack widths measuring 79% less compared to the FRC-only solution.
机译:由于它们的结构性能和耐用性,纤维增强混凝土(FRC)预制段现在通常用于世界各地的主要隧道应用。本文研究了由于隧道钻孔机(TBM)的运行而在施工期间在隧道衬里上发生不良引起的段的影响。在施工期间,随着TBM的进展,隧道衬里的缺陷可能会出现。然后可以由TBM推力插孔(由于未经校正的倾斜或偏心)负载不当施加裂缝。进一步的缺陷可以由不均匀的环形接头引起,并且在衬里的设计和构造中需要考虑这一点。因为预制段不均匀地由先前的环均匀地支撑,所以它们受到瞬态弯曲力矩,可以在挖掘阶段和使用寿命期间危及它们的完整性和性能。本文提出的玻璃纤维增​​强聚合物(GFRP)增强液的杂交液的杂化溶液可以克服这些情况,这些情况不能通过GFRP加固器提供的“弹性返回动作”来满足于仅限FRC段。进行了模拟TBM推力的两个全规模测试,考虑了不规则的支持条件。基于所得的结果,得出结论,所提出的混合溶液几乎完全恢复初始几何形状,剩余裂缝宽度与仅FRC的溶液相比减少79%。

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