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Investigation of the mechanical properties of double lining structure of shield tunnel with different joint surface

机译:不同关节表面屏蔽隧洞双衬砌结构力学性能研究

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For the shield tunnel with double-layer lining, the type the joint surface between the segment and secondary lining has significant influence. Depending on the smoothness of the border and the transmit patterns of the forces between the segment and the secondary lining, the lining structure is divided into double-shell and composite structures. For the double-shell structure, only the axial force is transmitted through the border, while the axial and shear forces are transmitted through the border for the composite structure. In this paper, based on the similarity model test and the engineering background of the Shiziyang Tunnel, the influence of the joint surface type on the mechanical behaviors and failure characteristics of the lining structure is studied under the condition that the segment and secondary lining of the shield tunnel double-lining structure share the overload together. The result shows that (1) the differences in the bending moment values between the double-shell and composite structures are small, but the axial force values and the changing trends are obviously different; the load bore by the secondary lining and its ratio to the external load increases with the external load; further, the segment is still the main bearing structure; (2) after the macroscopic failure of the segmental lining structure, the double-shell lining loses stability rapidly, the bearing capacity loss is abrupt, and the damage of lining structure is more serious; when the composite structure loses stability, the failure process of the composite structure is longer, and the structural failure is ductile; (3) with the same load, the ratio of maximum displacement to the tunnel radius of the double-shell structure is larger, and the load level of the lining structure when failure occurs is lower. Generally speaking, the composite structure improves the overall stiffness of the double-lining structure, which is in favor of the joint load carrying of the segment and secondary lining to control the structural deformation; additionally, the bearing capacity of the composite structure is obviously better than that of the double-shell structure; therefore, it is recommended in the double-lining design of the shield tunnel.
机译:对于带双层衬砌的屏蔽隧道,段与次级衬里之间的接合面具有显着影响。取决于边界的平滑度和区段和二次衬砌之间的力的发射模式,衬里结构被分成双壳和复合结构。对于双壳结构,只有轴向力通过边界传递,而轴向和剪切力通过用于复合结构的边界传递。本文基于相似性模型试验和静阳隧道的工程背景,在段和二次衬里的条件下,研究了关节表面类型对衬砌结构的机械行为和故障特性的影响屏蔽隧道双衬里结构共享过载。结果表明(1)双壳和复合结构之间弯矩值的差异很小,但轴向力值和变化趋势显然是不同的;通过外部载荷增加二次衬里的负载孔及其与外部负荷的比率增加;此外,该段仍然是主轴承结构; (2)在节段衬砌结构的宏观故障后,双壳衬片迅速失去稳定性,承载力损失突然,衬里结构的损坏更严重;当复合结构失去稳定性时,复合结构的故障过程较长,结构失败是延展性的; (3)具有相同的负载,最大位移与双壳结构的隧道半径的比率较大,并且在发生故障时衬里结构的载荷水平较低。一般而言,复合结构改善了双衬砌结构的总刚度,这有利于段和次级衬里的关节载荷,以控制结构变形;另外,复合结构的承载能力明显优于双壳结构;因此,建议在盾构隧道的双衬里设计中。

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