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Research Articles

Fractal characteristics and acoustic emission b-value of cement superfine tailings backfill with initial defect consideration

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Pages 384-407 | Received 14 Oct 2022, Accepted 05 Apr 2023, Published online: 12 Apr 2023

References

  • Carpinteri A, Accornero F. Multiple snap-back instabilities in progressive microcracking coalesence, Engng. Fract Mech. 2018;187:272–281.
  • Cui W, Liu MM, Song HF, et al. Influence of initial defects on deformation and failure of concrete under uniaxial compression, Eng. Fract Mech. 2020;234:107106.
  • Zhao X, Dong Q, Chen X, et al. Influence of mesoscale heterogeneous and initial defects on the fracture of cement-treated base materials. Construct Build Mater. 2021;272:121669.
  • Xu WB, Du JH, Song WD. Experiment on the mechanism of consolidating backfill body of extra-fine grain unclassified tailings and cementitious materials. Rock Soil Mech. 2013;34(8):2295–2302.
  • Gao Y, Sun H. Influence of initial defects on crack propagation of concrete under uniaxial compression. Construct Build Mater. 2021;277:122361.
  • Cao S, Yilmaz E, Yin Z, et al. CT scanning of internal crack mechanism and strength behavior of cement-fiber-tailings matrix composites. Cem Concr Compos. 2021;116:103865.
  • Zhou Y, Yan Y, Zhao K, et al. Study of the effect of loading modes on the acoustic emission fractal and damage characteristics of cemented paste backfill. Constr Build Mater. 2021;277:122311.
  • Shirole D, Hedayat A, Walton G. Damage monitoring in rock specimens with pre-existing flaws by non-linear ultrasonic waves and digital image correlation. Int J Rock Mech Min Sci. 2021;142:104758.
  • Wong RCK, Chau KT. Estimation of air void and aggregate spatial distributions in concrete under uniaxial compression using computer tomography scanning. Cement Concr Res. 2005;35(8):1566–1576.
  • Sun W, Hou K, Yang Z, et al. X-ray CT three-dimensional reconstruction and discrete element analysis of the cement paste backfill pore structure under uniaxial compression. Constr Build Mater. 2017;138:69–78.
  • Yongshang M, Weizhong C, Densen Y, et al. Research on damage test of brittle rocks based on 3D digital image correlation technology. Geotechnics. 2017;38(01):117–123.
  • Chen XZ, Cao YW, Liu SW, et al. Non-contact Poisson’s ratio testing method based on digital images. J Coal. 2014;39(S2):366–371.
  • Miao S, Z PP, Li S, et al. Quantitative fracture analysis of hard rock containing double infilling flaws with a novel DIC-based method. Eng Fract Mech. 2021;252:107846.
  • Zhang Y, Zhao G, Qin L. Acoustic emission uncovers thermal damage evolution of rock. Int J Rock Mech Min Sci. 2020;132:104388.
  • Wu J, Feng M, Ni X, et al. Aggregate gradation effects on dilatancy behavior and acoustic characteristic of cemented rockfill. Ultrasonics. 2019;92:79–92.
  • Carpinteri A, Lacidogna G, Accornero F, et al. Influence of damage in the acoustic emission parameters. Cem Concr Compos. 2013;44:9–16.
  • Dzaye ED, De Schutter G, Aggelis DG. Monitoring early-age acoustic emission of cement paste and fly ash paste. Cem Concr Res. 2020;129:105964.
  • De Smedt M, Vrijdaghs R, Van Steen C, et al. Damage analysis in steel fibre reinforced concrete under monotonic and cyclic bending by means of acoustic emission monitoring. Cem Concr Compos. 2020;114:103765.
  • Das AK, Leung CK. Power spectral entropy of acoustic emission signal as a new damage indicator to identify the operating regime of strain hardening cementitious composites. Cem Concr Compos. 2019;104:103409.
  • Barile C, Casavola C, Pappalettera G, et al. Damage characterization in composite materials using acoustic emission signal-based and parameter-based data, Compos. B Eng. 2019;178:107469.
  • Saeedifar M, Saleh MN, De Freitas ST, et al. Damage characterization of adhesively-bonded Bi-material joints using acoustic emission, compos. B Eng. 2019;176:107356.
  • Lacidogna G, Accornero F, Carpinteri A. Influence of snap-back instabilities on acoustic emission damage monitoring, Engng. Fract Mech. 2019;210:3–12.
  • Wang J, Fu J, Song W, et al. Acoustic emission characteristics and damage evolution process of layered cemented tailings backfill under uniaxial compression. Constr Build Mater. 2021;295:123663.
  • Mahmoud H, Mazal P, Vlasic F. Relationship between acoustic emission signal and loads on pneumatic cylinders. Case Stud NondestrTest Eval. 2020;35(2):222–238.
  • Zhao K, Yu X, Zhu S, et al. Acoustic emission investigation of cemented paste backfill prepared with tantalum–niobium tailings. Constr Build Mater. 2020;237:117523.
  • Zhao K, Huang M, Yan Y, et al. Research on mechanical properties and synergistic deformation of tailings cemented backfill material combinations with different lime-sand ratios. Chin J Roc Mech Eng. 2021;40(S1):2781–2789.
  • Zhao K, He ZW, Ning FJ, et al. Acoustic emission characteristics of cementitious material assemblies with different ash-sand ratios. J Silicate. 2021;49(11):2462–2469.
  • Cao A, Jing G, Ding Y, et al. Mining-induced static and dynamic loading rate effect on rock damage and acoustic emission characteristic under uniaxial compression. Saf Sci. 2019;116:86–96.
  • Liu X, Liu Z, Li X, et al. Experimental study on the effect of strain rate on rock acoustic emission characteristics. Int J Rock Mech Min Sci. 2020;133:104420.
  • Zhang Z, Deng J, Zhu J, et al. An experimental investigation of the failure mechanisms of jointed and intact marble under compression based on quantitative analysis of acoustic emission waveforms. Rock Mech Rock Eng. 2018;51(7):2299–2307.
  • Hao H Study on the Relationship between Rock Mechanical Properties and Fractal Dimension of Acoustic Emission. Ph.D.Thesis, Wuhan University of Technology, Wuhan, China, 2011.
  • Ji Z, Jiang P, Yi H, et al. Application of two novel acoustic emission parameters on identifying the instability of granite. Entropy. 2022;24(6):750. DOI:10.3390/e24060750
  • Li SL, Lin CY, Mao JX, et al. Experimental study on fractal dimension characteristics of acoustic emission of rock under multilevel uniaxial cyclic loading. Eng Mech. 2015;32(9):92–99.
  • Li YH, Liu JP, Zhao XD, et al. Study on b-value and fractal dimension of acoustic emission during rock failure process. Rock Soil Mech. 2009;30(9):2559–2563+2574.
  • Chen T, Zhao K, Yan Y, et al. Mechanical properties and acoustic emission response of cemented tailings backfill under variable angle shear. Constr Build Mater. 2022;343:128114.
  • Zhang Z, Wang E, Li N. Fractal characteristics of acoustic emission events based on single-link cluster method during uniaxial loading of rock. Chaos, Solitons & Fractals. 2017;104:298–306.
  • He Z, Zhao K, Yan Y, et al. Mechanical response and acoustic emission characteristics of cement paste backfill and rock combination. Constr Build Mater. 2021;288:123119.
  • Wu S, Ge H, Wang X, et al. Shale failure processes and spatial distribution of fractures obtained by AE monitoring. J Nat Gas Sci Eng. 2017;41:82–92.
  • Zhang LM, Ma SQ, Ren MY, et al. Acoustic emission frequency and b-value characteristics of rock damage process under different surrounding pressure. J Rock Mech Eng. 2015;34(10):2057–2063.
  • Zhao K, Yu X, Zhu S, et al. Acoustic emission fractal characteristics and mechanical damage mechanism of cemented paste backfill prepared with tantalum niobium mine tailings. Constr Build Mater. 2020;258:119720.
  • Zhang Q, Zhang XP. A numerical study on cracking processes in limestone by the b-value analysis of acoustic emissions. Comput Geotech. 2017;92:1–10.
  • Xiao F, Liu G, Zhang Z, et al. Acoustic emission characteristics and stress release rate of coal samples in different dynamic destruction time. Int J Min Sci Technol. 2016;26(6):981–988. DOI:10.1016/j.ijmst.2016.09.001
  • Yang J, Mu ZL, Yang SQ. Experimental study of acoustic emission multi-parameter information characterizing rock crack development. Eng Fract Mech. 2020;232:107045.
  • Meng F, Zhou H, Wang Z, et al. Experimental study on the prediction of rockburst hazards induced by dynamic structural plane shearing in deeply buried hard rock tunnels. Int J Rock Mech Min Sci. 2016;86:210–223.
  • Liu X, Mengcheng P, Li x, et al. Study on the characteristics of granite acoustic emission b-value under dynamic and static loading conditions. J Rock Mech Eng. 2017;36(S1):3148–3155.
  • Sagasta F, E ZM, Piotrkowski R, et al. Acoustic emission energy b-value for local damage evaluation in reinforced concrete structures subjected to seismic loadings. Mech Syst Signal Process. 2018;102:262–277.
  • Shang X, Lu Y, Li B, et al. A novel method for estimating acoustic emission b value using improved magnitudes. IEEE Sens J. 2021;21(15):16701–16708. DOI:10.1109/JSEN.2021.3076866
  • Zhao K, Song YF, Yu X, et al. Early mechanical properties and damage intrinsic model of tailing sand colluvial fill under different fiber action. J Rock Mech Eng. 2022;41(02):282–291.
  • Zhao K, He Z, Yang J, et al. Investigation of failure mechanism of cement-fiber-tailings matrix composites using digital image correlation and acoustic emission. Constr Build Mater. 2022;335:127513.
  • Zhao K, Huang M, Zhou Y, et al. Synergistic deformation in a combination of cemented paste backfill and rocks. Constr Build Mater. 2022;317:125943.
  • Hu J, Zhao F, Kuang Y, et al. Microscopic characteristics of the action of an air entraining agent on cemented paste backfill pores. Alexandria Eng J. 2020;59(3):1583–1593. DOI:10.1016/j.aej.2020.04.005
  • Albano AM, Muench J, Schwartz C, et al. Singular-value decomposition and the Grassberger-Procaccia algorithm. Phys Rev A. 1988;38(6):3017. DOI:10.1103/PhysRevA.38.3017
  • Wang FQ, Luo CS, Chen GX. Improvement of G-P algorithm and its application. Chinese J Compute Physics. 1993;10(3):345–351.
  • Yang J, Zhao K, Yu X, et al. Fracture evolution of fiber-reinforced backfill based on acoustic emission fractal dimension and b-value. Cem Concr Compos. 2022;134():104739.
  • Zhang H, Lu K, Zhang W, et al. Quantification and acoustic emission characteristics of sandstone damage evolution under dry–wet cycles. J Build Eng. 2022;48:103996.
  • W ZS, J SK, F XX, et al. Fractal characteristics and acoustic emission of anisotropic shale in Brazilian tests. Tunn Undergr Space Technol. 2018;71:298–308.
  • Sun B, Hou S, Xie J, et al. Failure Prediction of two types of rocks based on acoustic emission characteristics. Adv Civil Eng. 2019;2019:1–11.
  • Zuo JP, Pei JL, Liu JF, et al. Investigation on acoustic emission behavior and its time-space evolution mechanism in failure process of coal-rock combined body. Chin J Rock Mech Eng. 2011;30(08):1564–1570.
  • Zhao K, Yang J, Yu X, et al. Damage evolution process of fiber-reinforced backfill based on acoustic emission three-dimensional localization. Compos Struct. 2023;309:116723.

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