Evolution of Particle Breakage of Soil-rock Mixture under Shearing
TU Yiliang1, LI Jun2, CHAI Hejun3, LIU Xinrong4
1. State of Laboratory of Mountain Bridge-level Tunnel Project by province and Ministry, Chongqing Jiaotong University, Chongqing 400074, China; 2. Chongqing Jiaotong University, Chongqing 400074, China; 3. Chongqing Transportation Research and Design Institute Co. Ltd, Chongqing 400067, China; 4. Chongqing University, Chongqing 400045, China
Abstract:Research purposes: Under certain stress conditions, the particles of soil-rock mixture in subgrade fillings of railway, airport, highway will be broken, which leads to the deformation and stability problems of the filling engineering. Most of the existing researches focus on the characteristics of particle breakage after shear failure, but few on the dynamic evolution of particle breakage during the shearing process. Therefore, a large-scale direct shear test machine combined with acoustic emission acquisition system was used to conduct shear tests on soil-rock mixtures with six rock contents and three rock strength under six normal pressures in this paper. Research conclusions: (1)The relationship between cumulative AE counts and relative breakage index of the failure soil-rock mixture is linear, which proves that it is feasible to use acoustic emission technology in the study of particle breakage evolution of soil-rock mixture. (2)The particle breakage stage during the shearing process can be divided into five typical stages: no breakage stage, initial breakage stage, growth breakage stage, stable breakage stage and residual breakage stage. The corresponding response of stress and strain enters the elastic stage, elastoplastic transition stage, elastic-plastic stage, peak strength stage and plastic failure stage. (3)When the normal pressure is greater, or the rock content is greater, or the rock strength is lower, the duration of the no breakage stage and the residual breakage stage become shorter, and the duration of the initial breakage stage, growth breakage stage, and stable breakage stage get longer. (4)The difference of acoustic emission characteristics between soil-rock mixture and rock mass during shearing process is significant, which is due to the different continuity of material composition. (5)The research results can provide a new idea for the study of particle breakage of soil-rock mixture.
涂义亮, 李军, 柴贺军, 刘新荣. 剪切作用下土石混合料的颗粒破碎演化规律[J]. 铁道工程学报, 2022, 39(3): 19-25.
TU Yiliang, LI Jun, CHAI Hejun, LIU Xinrong. Evolution of Particle Breakage of Soil-rock Mixture under Shearing. Journal of Railway Engineering Society, 2022, 39(3): 19-25.
涂义亮,刘新荣,任青阳,等.含石量和颗粒破碎对土石混合料强度的影响研究[J].岩土力学,2020(12):1-10. Tu Yiliang, Liu Xinrong, Ren Qingyang, etc. The Effects of Rock Contents and Particle Breakage on Strength Characteristics of Soil-Rock Aggregate[J]. Rock and Soil Mechanics, 2020(12):1-10.
[2]
Hardin B O. Crushing of Soil Particles[J]. Journal of Geotechnical Engineering, 1985(10):1177-1192.
[3]
文妮, 李希. 考虑颗粒破碎效应的道砟大型直剪试验研究[J]. 铁道工程学报, 2019(4):29-32.Wen Ni, Li Xi. Large-scale Direct Shear Test of Ballast Considering Particle Breakage Effect[J]. Journal of Railway Engineering Society,2019 (4):29-32.
[4]
秦尚林, 杨兰强, 高惠, 等. 不同应力路径下绢云母片岩粗粒料声发射特征[J].岩土力学, 2015(1):89-96.Qin Shanglin, Yang Lanqiang, Gao Hui, etc. Acoustic Emission Characteristics of Sericite Schist Coarse Aggregates under Different Stress Paths[J]. Rock and Soil Mechanics, 2015(1):89-96.
[5]
范雷,周火明,熊诗湖.现场岩体直剪试验声发射特征及其破坏机制[J].长江科学院院报, 2012(8):29-33.Fan Lei, Zhou Huoming, Xiong Shihu. Acoustic Emission Characteristics and Failure Mechanism of Rock Mass in Field Shear Test[J]. Journal of Yangtze River Scientific Research Institute, 2012(8):29-33.
[6]
Smith A, Dixon N. Acoustic Emission Behaviour of Dense Sands[J]. Geotechnique, 2019(12):1-45.
[7]
陈清运,孙吉主,汪稔.钙质砂声发射特征的三轴试验研究[J].岩土力学, 2009(7):2027-2030.Chen Qingyun,Sun Jizhu,Wang Ren. Triaxial Experiment Study of Acoustic Emission Laws of Calcareous Sand[J]. Rock and Soil Mechanics, 2009 (7): 2027-2030.
[8]
Deng L Z, Yuan H Y, Chen J G, etc. Experimental Investigation on Progressive Deformation of Soil Slope Using Acoustic Emission Monitoring[J]. Engineering Geology, 2019(261): 1-16.