Large-Scale Direct Shear Test Study of Contact Interface Between Viscous Mud-Rock Mass and Bedrock in Fault Fracture Zone
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1.School of Civil Engineering and Architecture, East China Jiaotong University, Nanchang 330013 , China ; 2.Engineering R&DCentre for Underground Technology of Jiangxi Province, East China Jiaotong University, Nanchang 330013 , China ;3.School of Civil Engineering, Jiangxi V&T College of Communications, Nanchang 330013 , China

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TU431

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    Abstract:

    In order to understand the stability and deformation mechanism of tunnel through fault zone,and to provide theoretical basis for scientific analysis of tunnel excavation through fault fracture zone, a large-scale direct shear test was carried out on the contact surface between the viscous mud-rock mass and the bedrock with joint surface,and the influence of normal pressure, stone content and rock dip angle on the interface mechanical properties of the viscous mud-bedrock contact surface was studied. The test results show that: The interfacial stress-strain relationship shows softening characteristics at low normal stress,and gradually transitions from weak softening to weak hardening with the increase of normal stress; The normal stress is positively correlated with the initial tangential modulus of the interface. The shear strength and stiffness of the interface increase with the increase of stone content; Compared with the block angle of 0°, the interface strength corresponding to the rock angle of 90° is improved; The internal friction angle of the interface has a linear positive correlation with the stone content, and the cohesion path has a negative correlation. When analyzing the stability and deformation mechanism of tunnel crossing fault zone, it is necessary to fully consider the influence of interface normal stress, stone content and rock inclination angle on interface strength.

    Reference
    [1] 黄锋,朱涛,刘星辰,等.侧压系数对高应力破碎区隧道结构受力影响的试验研究[J].铁道学报,2023,45(12):174-181.HUANG F,ZHU T,LIU X C,et al.Experimental study on influence of lateral pressure coefficient on stress of tunnel structure in high stress fracture area[J].Journal of the China Railway Society.2023,45(12):174-181.
    [2] 付艳斌,王福道,陆岸典,等.断层破碎带海底盾构隧道管片纵向沉降解析解及应用[J].岩土工程学报,2023,45(7):1393-1401.FU Y B,WANG F D,LU A D,et al.Analytical solution to longitudinal settlement of segments of subsea shield tunnels in fault fracture zones and its application[J].Chinese Journal of Geotechnical Engineering,2023,45(7):1393-1401.
    [3] 李建辉,李洁,王纯皎,等.开裂隧道衬砌有压渗水室内模型试验研究[J].华东交通大学学报,2022,39(1):40-49.LI J H,LI J,WANG C J,et al.Experimental study on water seepage of cracked tunnel lining under groundwater pressure[J].Journal of East China Jiaotong University,2022,39(1):40-49.
    [4] 李术才,许振浩,黄鑫,等.隧道突水突泥致灾构造分类、 地质判识、孕灾模式与典型案例分析[J].岩石力学与工程学报,2018,37(5):1041-1069.LI S C,XU Z H,HUANG X,et al.Classification,geological identification,hazard mode and typical case studies of hazard-causing structures for water and mud inrush in tunnels[J].Chinese Journal of Rock Mechanics and Engineering,2018,37(5):1041-1069.
    [5] MEDLEY E W.The Engineering characterization of melanges and similar block-in-matrix rocks[D].Berkeley:University of California,1994.
    [6] SCHUBERT W,FASCHING A,GORICKI A.Tunnelling in fault zones-state of the art[J].Tunnelling & Underground Space Technology,2006,21(3):376-377.
    [7] 成浩,王晅,张家生,等.考虑粗糙度影响的不同土与混凝土界面大型直剪试验研究[J].工程科学与技术,2019,51(5):117-125.CHENG H,WANG X,ZHANG J S,et al.Large-scale direct shear tests of interfaces between different soils and concrete considering roughness effect[J].Advanced Engineering Sciences,2019,51(5):117-125.
    [8] 周国庆,夏红春,赵光思.深部土-结构接触面与界面层力学特性的直接剪切试验[J].煤炭学报,2008,33(10):1157-1162.ZHOU G Q,XIA H C,ZHAO G S.Direct shear experiment of deep soil-structure interface and interface layer mechanical characteristics[J].Journal of China Coal Society,2008,33(10):1157-1162.
    [9] 杨忠平,李进,蒋源文,等.含石率对土石混合体–基岩界面剪切力学特性的影响[J].岩土工程学报,2021.43(8):1443-1452.YANG Z P,LI J,JIANG Y W,et al.Influences of stone content on shear mechanical properties of soil-rock mixture-bedrock interface[J].Chinese Journal of Geotechnical Engineering,2021.43(8):1443-1452.
    [10] 安琪,滕伟福,李伟忠.三峡库区巴东组岩-土接触面抗剪强度特性研究[J].安全与环境工程,2016,23(2):110-116.AN Q,TENG W F,LI W Z.Shear strength characteristics of rock-soil interface in Badong formation in the Three Gorges rservoir of China[J].Safety and Environmental Engineering,2016,23(2):110-116.
    [11] 邹畅宇.响应石块长轴定向角的土石体力学特性研究 [D].湘潭:湘潭大学,2021.ZOU C Y.Study on mechanical properties of soil and rock with long axis orientation angle of response block stone[D].Xiangtan:Xiangtan University,2021.
    [12] 张声宇.断层破碎带夹泥岩体力学特性试验与数值分析[D].南昌:华东交通大学,2022.ZHANG S Y.Test and numerical analysis of mechanical properties of muddy rock mass in fault fracture zone[D].Nanchang:East China jiaotong University,2022.
    [13] 齐群,包含,兰恒星,等.断层泥剪切力学行为与应变软化特征研究[J].工程地质学报,2019,27(5):1101-1109.QI Q,BAO H,LAN H X,et al.Behavior of shearing mechanics and characteristics of strain softening of fault gouge[J].Journal of Engineering Geology,2019,27(5):1101-1109.
    [14] 王鹏飞,谭文辉,马学文,等.不同胶结度断层泥强度参数与含水率关系[J].岩土力学,2019,40(5):1657-1662.WANG P F,TAN W H,MA X W,et al.Relationship between strength parameters and water content of gouges with different degrees of consolidation[J].Rock and Soil Mechanics,2019,40(5):1657-1662.
    [15] 杨忠平,蒋源文,李诗琪,等.土石混合体-基岩界面剪切力学特性试验研究[J].岩土工程学报,2020,42(10):1947-1954.YANG Z P,JIANG Y W,LI S Q,et al.Experimental study on shear mechanical properties of soil-rock mixture-bedrock interface[J].Chinese Journal of Geotechnical Engineering,2020,42(10):1947-1954.
    [16] 钱建固,陈宏伟,贾鹏,等.注浆成型螺纹桩接触面特性试验研究[J].岩石力学与工程学报,2013,32(9):1744-1749.QIAN J G,CHEN H W,JIA P,et al.Experimental study of mechanical behaviors of grouting-screw pile interface [J].Chinese Journal of Rock Mechanics and Engineering,2013,32(9):1744-1749.
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邹弈,朱碧堂,吴颖彪,周宇航.断层破碎带黏性夹泥岩体与基岩接触界面大型直剪试验研究[J].华东交通大学学报英文版,2025,42(1):45-51.
Zou Yi, Zhu Bitang, Wu Yingbiao, Zhou Yuhang. Large-Scale Direct Shear Test Study of Contact Interface Between Viscous Mud-Rock Mass and Bedrock in Fault Fracture Zone[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2025,42(1):45-51

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  • Received:March 23,2024
  • Online: March 24,2025
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