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Experimental and Numerical Study on Anchorage Strength and Deformation Properties of Blocky Rock Mass 被引量:1

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摘要 This study experimentally and numerically investigated the anchorage properties,bolt force evolution,deformation and stress fields of blocky rock mass with various dip angles of joint surfaces under an applied axial load.The results show that due to bolt reinforcement,the axial stress-strain curves of anchorage blocky rock mass show typical strain-hardening characteristics,and comparedwithmodels without anchorage,the peak strength and elastic modulus increase by 21.56%and 20.0%,respectively.With an increase in axial stress,the lateral strain continuously increases,and restriction effects of bolts reduce the overall deformation of model surfaces.The axial stressstrain curves of anchorage blocky rock mass in the simulations present a“double peak strength”phenomenon due to bolt reinforcement,and the peak strength,second peak strength,residual strength,surface displacement field,as well as the principal stress fields all depend on the dip angles of joint surfaces.As a result of the bolt reinforcement effects,cone-shaped compression zones are produced in the models,and compression zones of adjacent bolts superimpose with each other to form anchorage belts,improving the overall bearing capacity of anchorage models.Obvious stress concentration can be observed at both bolt end and anchorage section.Not only the role of bolt support transfers the blocky rock mass to be a three-dimensional stress state through compression effects,but also it improves both tensile strength and shear resistance of both joint surfaces and the overall blocky rock mass.
出处 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第11期725-753,共29页 工程与科学中的计算机建模(英文)
基金 This work is financially supported by National Natural Science Foundation of China(Nos.51904290,51734009) Natural Science Foundation of Jiangsu Province,China(No.BK20180663) Opening Fund of State Key Laboratory of Geohazard Prevention and Geoenvironment Protection(Chengdu University of Technology),China(No.SKLGP2020K021).
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  • 1董方庭,宋宏伟,郭志宏,鹿守敏,梁士杰.巷道围岩松动圈支护理论[J].煤炭学报,1994,19(1):21-32. 被引量:690
  • 2许国安,靖洪文.煤矿巷道围岩松动圈智能预测研究[J].中国矿业大学学报,2005,34(2):152-155. 被引量:31
  • 3袁溢,漆泰岳.全锚锚杆托板效应的数值模拟分析[J].矿业工程,2006,4(5):65-67. 被引量:15
  • 4贾颖绚,宋宏伟,段艳燕.非连续岩体锚杆导轨作用的物理模拟研究[J].中国矿业大学学报,2007,36(5):614-617. 被引量:10
  • 5LANG T A. Theory and practice of rock bolting[J].Trans Amer Inst Min Engrs,1961.333-348.
  • 6董方庭.锚喷支护研究--围岩松动圈测定及锚固体强度实验(实验小节)[J]中国矿业学院学报,1980(02):25-36.
  • 7CHUNLIN C L. Rock support design based on the concept of pressure arch[J].{H}International Journal of Rock Mechanics and Mining Sciences,2006,(07):1083-1090.doi:10.1016/j.ijrmms.2006.02.007.
  • 8HOCK E,BROWN E. T.Practical estimates of rock mass strength[J].{H}International Journal of Rock Mechanics and Mining Sciences,1997,(08):1165-1186.
  • 9VERVUURT A,VAN MIER J G M,SCHLANGEN E. Analysis of anchor pull-out in concrete[J].{H}Materials and Structures,1994,(05):251-259.
  • 10HASHIMOTO J,TAKIGUCHI K. Experimental study on pullout strength of anchor bolt with an embedment depth of 30 mm in concrete under high temperature[J].{H}Nuclear Engineering and Design,2004,(2/3):151-163.doi:10.1016/j.nucengdes.2003.11.003.

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