Experimental and numerical investigation on the shear behavior and damage mechanism of segmental joint under compression-shear load
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[1] Kun Feng,et al. Full-scale test and numerical modeling on deformation and damage behavior of segmental joints under ultimate compression-bending load , 2023, Engineering Structures.
[2] Jing-Xuan Zhang,et al. Experimental study on Inter-ring joint shearing characteristics of gas transmission shield tunnel with bent bolt and tenon , 2022, Tunnelling and Underground Space Technology.
[3] Chi Zhang,et al. Full-scale experimental study on failure characteristics of the key segment in shield tunnel with super-large cross-section , 2022, Tunnelling and Underground Space Technology.
[4] Jin Ning,et al. Pressure test of a prestressed concrete cylinder pipe using distributed fiber optic sensors: Instrumentation and results , 2022, Engineering Structures.
[5] Hehua Zhu,et al. Experimental study on mechanical behaviors of segmental joints with ductile-iron joint panels for deep-buried shield tunnels bearing high inner water pressure , 2022, Tunnelling and Underground Space Technology.
[6] Q. Yan,et al. Failure analysis of a new-type shield tunnel based on distributed optical fiber sensing technology , 2022, Engineering Failure Analysis.
[7] Wenbo Lu,et al. The effects of initial stresses on nonlinear dynamic response of high arch dams subjected to far-field underwater explosion , 2022, Engineering Structures.
[8] Kun Feng,et al. Prototype test of the mechanical behavior and failure mechanism of segment structure with distributed mortises and tenons , 2021, Structural Concrete.
[9] Yang Qi,et al. Full-scale test on seismic performance of circumferential joint of shield-driven tunnel , 2021 .
[10] Shaokun Ma,et al. Study of the mechanical behaviour and damage characteristics of three new types of joints for fabricated rectangular tunnels using a numerical approach , 2021, Tunnelling and Underground Space Technology.
[11] Y. Bao,et al. Detection, visualization, quantification, and warning of pipe corrosion using distributed fiber optic sensors , 2021, Automation in Construction.
[12] Di Wang,et al. 3D nonlinear finite element modelling of mechanical behavior of a new wall-beam-strut joint for prefabricated underground construction and validation again experimental testing , 2021 .
[13] R. Sieńko,et al. DFOS measurements for strain analysis of anchorage zone in 57‐year‐old posttensioned precast girder using static and high‐frequency approach , 2021, Structural Concrete.
[14] F. Liang,et al. Numerical simulation and simplified analytical model for the longitudinal joint bending stiffness of a tunnel considering axial force , 2021, Structural Concrete.
[15] Chuan He,et al. Experimental study on the tensile performance of circumferential joint in shield tunnel , 2021 .
[16] Y. Qiao,et al. Flexural behavior of segmental joint containing double rows of bolts: Experiment and simulation , 2021 .
[17] Zhang Dong-mei,et al. Shearing Behavior of Circumferential Joints with Oblique Bolts in Large Diameter Shield Tunnel , 2020 .
[18] Chuan He,et al. Refined three‐dimensional numerical model for segmental joint and its application , 2020, Structural Concrete.
[19] B. Gao,et al. Damage evolution of tunnel lining with steel reinforced rubber joints under normal faulting: An experimental and numerical investigation , 2020 .
[20] António Barrias,et al. Distributed optical fibre sensors in concrete structures: Performance of bonding adhesives and influence of spatial resolution , 2018, Structural Control and Health Monitoring.
[21] Jun Yang,et al. Soil-tunnel interaction modelling for shield tunnels considering shearing dislocation in longitudinal joints , 2018, Tunnelling and Underground Space Technology.
[22] Jie Liu,et al. Shearing Behavior of Segmental Joints of Large-Diameter Shield Tunnel , 2018 .
[23] Weiqi Wang,et al. Full-scale tests on bending behavior of segmental joints for large underwater shield tunnels , 2018 .
[24] X. Bao,et al. Measuring strain fields in FRP strengthened RC shear walls using a distributed fiber optic sensor , 2017 .
[25] Kenichi Soga,et al. Experimental investigation of the nonlinear behavior of segmental joints in a water-conveyance tunnel , 2017 .
[26] Kenichi Soga,et al. Comparison of the structural behavior of reinforced concrete and steel fiber reinforced concrete tunnel segmental joints , 2017 .
[27] Xian Liu,et al. Ultimate load‐carrying capacity of the longitudinal joints in segmental tunnel linings , 2017 .
[28] Hehua Zhu,et al. A progressive model to simulate the full mechanical behavior of concrete segmental lining longitudinal joints , 2015 .
[29] Jeeho Lee,et al. Plastic-Damage Model for Cyclic Loading of Concrete Structures , 1998 .
[30] Huai-na Wu,et al. Deformation behaviors and failure mechanism of segmental RC lining under unloading condition , 2022, Tunnelling and Underground Space Technology.
[31] E. Oñate,et al. A plastic-damage model for concrete , 1989 .
[32] F. Sidoroff,et al. Description of Anisotropic Damage Application to Elasticity , 1981 .