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Experimental study on the tensile performance of circumferential joint in shield tunnel

机译:盾构隧道圆周关节拉伸性能的试验研究

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摘要

When a shield tunnel is subjected to earthquakes and longitudinal deformation of the stratum, the segment ring may open along the longitudinal direction, thereby rendering the circumferential joint more vulnerable when being pulled. In this study, a self-made loading device was adapted to analyze the mechanical characteristics and failure process of a circumferential joint with a straight bolt in a large-section shield tunnel during the drawing process. The tensile performance was measured through tests with a 1:1 joint to study the behavior of the circumferential joint, including the strain distributions of steel fiber-reinforced concrete (SFRC) and reinforced concrete (RC), bolt stress distribution and transmission, structural acoustic emission (AE) and microscopic information of the segment concrete, and final failure mode of the joint under different load conditions. Results show during the drawing process, the circumferential joint with a straight bolt affects the stress distribution on the circumferential joint surface and the area of the hand hole on the inner surface of the segment; however, the circumferential joint has negligible effect on the outer surface of the segment. Although the straight bolt is always in a favorable working condition, segment failure is inevitable for both SFRC and RC segments. In addition, the damage zone expands mainly from the bolt hole on the joint surface to the hand hole on the inner surface. During the tensile process under cyclic loading and unloading conditions, the segment exhibits cumulative damage, and the Felicity effect can be verified using AE technology. In summary, the steel fibers improve the tensile strength and crack resistance of circumferential joints under high-strain conditions.
机译:当屏蔽隧道经受地震和纵向变形时,区段环可以沿纵向打开,从而使圆周接头在被拉上时更容易受到伤害。在该研究中,自制装载装置适于分析在拉伸过程中的大截面屏蔽隧道中的圆周关节的机械特性和故障过程。通过用1:1的接头测试测量拉伸性能,以研究圆周接头的行为,包括钢纤维钢筋混凝土(SFRC)和钢筋混凝土(RC),螺栓应力分布和传输,结构声学的应变分布发射(AE)和分段混凝土的微观信息,以及不同载荷条件下关节的最终失效模式。结果在拉伸过程中示出,具有直螺栓的圆周接头会影响圆周关节表面上的应力分布和段内表面上的手孔区域;然而,圆周关节对段的外表面具有可忽略的影响。虽然直线螺栓始终处于有利的工作条件,但是SFRC和RC段的段失败是不可避免的。此外,损伤区主要从接合面上的螺栓孔膨胀到内表面上的手孔。在循环载荷和卸载条件下的拉伸过程中,该段具有累积损伤,并且可以使用AE技术验证剧集效果。总之,钢纤维在高菌株条件下提高了周向关节的拉伸强度和抗裂性。

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