Rock and Soil Mechanics ›› 2021, Vol. 42 ›› Issue (4): 963-975.doi: 10.16285/j.rsm.2020.0833

• Fundamental Theroy and Experimental Research • Previous Articles     Next Articles

Three-dimensional mechanical properties and failure criterion of municipal solidified sludge under freeze-thaw cycles

YANG Ai-wu1, 2, XU Cai-li2, LANG Rui-qing2, WANG Tao2   

  1. 1. School of Environmental Science and Engineering, Donghua University, Shanghai 201620, China; 2. Key Laboratory of Soft Soil Engineering Characteristics and Engineering Environment of Tianjin, Tianjin Chengjian University, Tianjin 300384, China
  • Received:2020-06-17 Revised:2020-01-06 Online:2021-04-12 Published:2021-04-25
  • Supported by:
    This work was supported by the National Natural Science Foundation of China(NSFC)(51978440, 52008286), the Tianjin Science and Technology Project (19JCZDJC39700, 19JCQNJC06900) and the Fundamental Research Funds for the Central Universities (2232021A-07).

Abstract: To study the strength and deformation of municipal solidified sludge after different freeze-thaw cycles, the sludge solidified by CJYT-1 solidifying agent was tested through true triaxial tests. The stress-strain relationship and the strength and deformation characteristics after freeze-thaw cycles number of 0, 1, 3, 5, 8, 10 are obtained, and the influence of intermediate principal stress ratio b and the number of cycles N on the soil strength parameters (including cohesion c′ and internal friction angle ?′ ) are studied. The results of the freeze-thaw cycle test show that the unconfined compressive strength and density of the solidified sludge gradually decrease with the increase of the number of freeze-thaw cycles, and the change slows down and stabilizes after 8 cycles. The cohesion and the internal friction angle both increase with the increase of b. Compared with b=0, when b=1, the growth rate of and can reach 16.77% and 12.3%, respectively. As the number of cycles N increases, the failure strength of the soil gradually decreases, and the failure stress ratio Mb generally decreases. The dilatancy of the specimen does not change significantly. The cohesion and internal friction angle decrease with the increase of freeze-thaw cycles N. Based on the two commonly used, Lade-Duncan and Matsuoka-Nakai failure criteria, combined with the true triaxial test data of solidified sludge, a failure criterion suitable for solidified sludge is proposed, and the -b relationship curve of the criterion is analyzed. Comparing the failure criteria proposed in the article, Lade-Duncan and Matsuoka-Nakai failure criteria, the test results are closer to the failure criteria in the article.

Key words: freeze-thaw cycles, sludge solidification, three-dimensional mechanical properties, stress-strain relationship, failure criteria

CLC Number: 

  • TU 431
[1] QIAO Chen, WANG Yu, SONG Zheng-yang, LI Chang-hong, HOU Zhi-qiang, . Experimental study on the evolution characteristics of cyclic frost heaving pressure of saturated fractured granite [J]. Rock and Soil Mechanics, 2021, 42(8): 2141-2150.
[2] CHEN Hao, HU Xiao-rong. Triple-shear failure criteria and experimental verification for unsaturated soils [J]. Rock and Soil Mechanics, 2020, 41(7): 2380-2388.
[3] SUN Jing, GONG Mao-sheng, XIONG Hong-qiang, GAN Lin-rui, . Experimental study of the effect of freeze-thaw cycles on dynamic characteristics of silty sand [J]. Rock and Soil Mechanics, 2020, 41(3): 747-754.
[4] ZHANG Feng-rui, JIANG An-nan, YANG Xiu-rong, SHEN Fa-yi. Experimental and model research on shear creep of granite under freeze-thaw cycles [J]. Rock and Soil Mechanics, 2020, 41(2): 509-519.
[5] LI Jie-lin, ZHU Long-yin, ZHOU Ke-ping, LIU Han-wen, CAO Shan-peng, . Damage characteristics of sandstone pore structure under freeze-thaw cycles [J]. Rock and Soil Mechanics, 2019, 40(9): 3524-3532.
[6] WANG Zhen, ZHU Zhen-de, CHEN Hui-guan, ZHU Shu, . A thermo-hydro-mechanical coupled constitutive model for rocks under freeze-thaw cycles [J]. Rock and Soil Mechanics, 2019, 40(7): 2608-2616.
[7] MA Qiu-feng, QIN Yue-ping, ZHOU Tian-bai, YANG Xiao-bin. Mechanical properties and constitutive model of porous rock under loading and unloading [J]. Rock and Soil Mechanics, 2019, 40(7): 2673-2685.
[8] GAO Feng, XIONG Xin, ZHOU Ke-ping, LI Jie-lin, SHI Wen-chao, . Strength deterioration model of saturated sandstone under freeze-thaw cycles [J]. Rock and Soil Mechanics, 2019, 40(3): 926-932.
[9] GU Jian-xiao, YANG Jun-yan, WANG Yong, LÜ Hai-bo, . Simulation of carbonate sand with triaxial tests data based on modified model of South water double yield surface [J]. Rock and Soil Mechanics, 2019, 40(12): 4597-4606.
[10] JI En-yue, CHEN Sheng-shui, FU Zhong-zhi, . Experimental investigations on tensile cracking mechanical characteristics of gravelly core material [J]. Rock and Soil Mechanics, 2019, 40(12): 4777-4782.
[11] YE Wan-jun, LI Chang-qing, YANG Geng-she, LIU Zhong-xiang, PENG Rui-qi. Scale effects of damage to loess structure under freezing and thawing conditio [J]. , 2018, 39(7): 2336-2343.
[12] WANG Peng, XU Jin-yu, FANG Xin-yu, WANG Pei-xi, LIU Shao-he, WANG Hao-yu,. Water softening and freeze-thaw cycling induced decay of red-sandstone [J]. , 2018, 39(6): 2065-2072.
[13] MENG Shang-jiu, LI Xiang, SUN Yi-qiang, CHENG You-kun,. In-situ monitoring and analysis of permanent subgrade deformation in seasonally frozen regions [J]. , 2018, 39(4): 1377-1385.
[14] JIANG Jing-shan, CHENG Zhan-lin, ZUO Yong-zhen, DING Hong-shun,. Effect of dry density on mechanical properties of rockfill materials [J]. , 2018, 39(2): 507-514.
[15] JIANG Jing-shan, CHENG Zhan-lin, ZUO Yong-zhen, DING Hong-shun,. Experimental investigation on strength characteristic of coarse-grained materials in three-dimensional stress state [J]. , 2018, 39(10): 3581-3588.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] SUN Shu-lin,LI Fang,CHEN Jun. Electrical resistivity measurement for lime-stabilized silt soil[J]. , 2010, 31(1): 51 -55 .
[2] LI Ying-yong,ZHANG Ding-li,ZHANG Hong-bo,SONG Xiu-guang. Research on failure mechanism and effects of prestressed anchor cables for reinforcing slopes[J]. , 2010, 31(1): 144 -150 .
[3] LI Jing,MIAO Lin-chang,ZHONG Jian-chi,FENG Zhao-xiang. Deformation and damping characteristics of EPS beads-mixed lightweight soil under repeated load-unloading[J]. , 2010, 31(6): 1769 -1775 .
[4] LIANG Jian-wei, FANG Ying-guang, GU Ren-guo. Analysis of microelectric field effect of seepage in tiny-particle clay[J]. , 2010, 31(10): 3043 -3050 .
[5] LI Xiu-zhen,WANG Cheng-hua,DENG Hong-yan. A comparison of distance and Fisher discrimination methods applied to identifying potential landslides[J]. , 2011, 32(1): 186 -192 .
[6] JI Wu-jun. Investigation and analysis of engineering problems for loess tunnels[J]. , 2009, 30(S2): 387 -390 .
[7] CHEN Li-wen, SUN De-an. Bifurcation analysis of overconsolidated clays with soil-water coupling along different stress paths[J]. , 2011, 32(10): 2922 -2928 .
[8] ZHENG Gang ZHANG Li-ming DIAO Yu. Analysis of working performance of piles beneath excavation bottom and settlement calculation[J]. , 2011, 32(10): 3089 -3096 .
[9] ZHAO Ming-hua, LEI Yong, ZHANG Rui. Study of punching failure mode and safe thickness of pile foundation in karst region[J]. , 2012, 33(2): 524 -530 .
[10] WANG Song-he,QI Ji-lin. Experimental study of relaxation characteristics of warm permafrost[J]. , 2012, 33(6): 1660 -1666 .