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Original Articles

‘Optical-acoustic-stress’ responses in failure progress of cemented gangue-fly ash backfill material under uniaxial compression

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Pages 135-146 | Received 14 Sep 2018, Accepted 01 Jan 2019, Published online: 13 Feb 2019

References

  • Zhang J, Zhang Q, Sun Q, et al. Surface subsidence control theory and application to backfill coal mining technology. Environ Earth Sci. 2015;74(2):1439–1448.
  • Chen S, Yin D, Cao F, et al. An overview of integrated surface subsidence-reducing technology in mining areas of China. Nat Hazards. 2016;81(2):1129–1145.
  • Zhang J., Li B, Zhou N, et al. Application of solid backfilling to reduce hard-roof caving and longwall coal face burst potential. Int J Rock Mech Min Sci. 2016;88:197–205.
  • Li H, Guo G, Zhai SC. Mining scheme design for super-high water backfill strip mining under buildings: a Chinese case study. Environ Earth Sci. 2016;75(12):1017.
  • Cao W., Wang X, Li P, et al. Wide strip backfill mining for surface subsidence control and its application in critical mining conditions of a coal mine. Sustainability. 2018;10(3):700.
  • Yang W., Li L, Li X, et al. Water outbursts in underground mining with steeply dipping coal seams: numerical simulations based on a mining case. Eur J Environ Civ Eng. 2014;18(5):511–535.
  • Sun Q, Zhang J, Zhou N. Study and discussion of short-strip coal pillar recovery with cemented paste backfill. Int J Rock Mech Min Sci. 2018;104:147–155.
  • Zhao T., Zhang Y, Zhang Z, et al. Deformation monitoring of waste-rock-backfilled mining gob for ground control. Sensors. 2017;17(5):1044.
  • Ghoreishi-Madiseh S. A., Hassani F, Mohammadian A, et al. Numerical modeling of thawing in frozen rocks of underground mines caused by backfilling. Int J Rock Mech Min Sci. 2011;48(7):1068–1076.
  • Yao Y, Sun H. A novel silica alumina-based backfill material composed of coal refuse and fly ash. J Hazard Mater. 2012;213–214:71–82.
  • Wu D, Fall M, Cai SJ. Coupling temperature, cement hydration and rheological behaviour of fresh cemented paste backfill. Miner Eng. 2013;42:76–87.
  • Zhang Q, Wang X. Performance of cemented coal gangue backfill. J Cent South Univ Technol. 2007;60:444–449.
  • Zhang X., Lin J, Liu J, et al. Investigation of hydraulic-mechanical properties of paste backfill containing coal gangue-fly ash and its application in an underground coal mine. Energies. 2017;10. DOI:10.3390/en10091309
  • Querol X., Zhuang X, Font O, et al. Influence of soil cover on reducing the environmental impact of spontaneous coal combustion in coal waste gobs: a review and new experimental data. Int J Coal Geol. 2011;85(1):2–22.
  • He H., Hong F F, Tao X X, et al. A study on soil basic characteristics, main microbial flora and typical metal fraction surrounding coal gangue dump in xiangtan hunan province, south of China. Environ Earth Sci. 2016;75(6):488.
  • Pal S, Mahato S, Sarkar S. Impact of fly ash on channel morphology and ambient water quality of chandrabhaga river of eastern india. Environ Earth Sci. 2016;75(18):1268.
  • Yilmaz E., Benzaazoua M, Belem T, et al. Effect of curing under pressure on compressive strength development of cemented paste backfill. Miner Eng. 2009;22(9–10):772–785.
  • Fall M., Belem T, Samb S, et al. Experimental characterization of the stress-strain behaviour of cemented paste backfill in compression. J Mater Sci. 2007;42:3914–3922.
  • Yilmaz E, Fall M. Paste tailings management. Cham, Switzerland: Springer International Publishing; 2017.
  • Qi T., Feng G, Li Y, et al. Effects of fine gangue on strength, resistivity, and microscopic properties of cemented coal gangue backfill for coal mining. Shock Vib. 2015. DOI:10.1155/2015/752678
  • Qi T., Feng G, Zhang Y, et al. Effects of fly ash content on properties of cement paste backfilling. J Residuals Sci Technol. 2015;12:133–141.
  • Wu D, Deng T, Zhao R. A coupled THMC modeling application of cemented coal gangue-fly ash backfill. Constr Build Mater. 2018;158:326–336.
  • Bui P T., Ogawa Y, Nakarai K, et al. Internal curing of class-F fly-ash concrete using high-volume roof-tile waste aggregate. Mater Struct. 2017;50(4):203.
  • Li X, Xu J, Zhu W, et al. Choice of coal mine partial-filling technology according to balance between mining and filling. J Liaoning Tech Univ (Natural Science). 2008;27:168–171. in Chinese.
  • Xu J., Dayang X, and Weibing Z. Study and application of coal mining with partial backfilling. J China Coal Soc. 2015;40:1303–1312. in Chinese.
  • Zhu W., Xu J, Xu J, et al. Pier-column backfill mining technology for controlling surface subsidence. Int J Rock Mech Min Sci. 2017;96:58–65.
  • Du X., Feng G, Guo Y, et al. Failure analyses of unconfined CCWBM body in uniaxial compression based on central pressure variation. Waste Manage Res. 2018;36(2):159–168.
  • Gong P., Ma Z, Zhang R R, et al. Surrounding rock deformation mechanism and control technology for gob-side entry retaining with fully mechanized gangue backfilling mining : a case study. Shock Vib. 2017. DOI:10.1155/2017/6085941
  • Yu Y., Chen S E, Deng K Z, et al. Long-term stability evaluation and pillar design criterion for room-and-pillar mines. Energies. 2017;10(1644). DOI:10.3390/en10101644
  • Vidya Sagar R, Raghu Prasad BK, Sharma R. Evaluation of damage in reinforced concrete bridge beams using acoustic emission technique. Nondestruct Test Eva. 2012;27(2):95–108.
  • Wang, Y., Chen S J, Ge L, et al. The optimal wavelet threshold de-nosing method for acoustic emission signals during the medium strain rate damage process of concrete. Nondestruct Test Eva. 2016;1–18. DOI:10.1080/10589759.2016.1241252
  • Wang Y, Li X. Experimental study on cracking damage characteristics of a soil and rock mixture by UPV testing. B Eng Geol Environ. 2015;74(3):775–788.
  • Harry I., Knight B, Li J, et al. Quantitative evaluation of discrete failure events in composites using infrared imaging and acoustic emission. Nondestruct Test Eva. 2007;22(2–3):93–99.
  • Yılmaz T, Ercikdi B. Predicting the uniaxial compressive strength of cemented paste backfill from ultrasonic pulse velocity test. Nondestruct Test Eva. 2016;31(3):1–20.
  • Ercikdi B, Yilmaz T, Kulekci G. Strength and ultrasonic properties of cemented paste backfill. Ultrasonics. 2014;54(1):195–204.
  • Wu D, Zhang Y, Liu Y. Mechanical performance and ultrasonic properties of cemented gangue backfill with admixture of fly ash. Ultrasonics. 2016;64:89–96.
  • Qi T, Feng G. Resistivity and AE response characteristics in the failure process of CGB under uniaxial loading. Adv Mater Sci Eng. 2017. DOI:10.1155/2017/7857590
  • Gong C, Li CH, Zhao K. Study on fractal dimension of acoustic emission during cemented backfill micro crack evolution process. Appl Mech Mater. Trans Tech Publications 2014;556:236–240.
  • Li D., Feng G R, Guo Y X, et al. Analysis on the strength increase law of filling material based on response surface method. J China Coal Soc. 2016;41(2):392–398. in Chinese.
  • Feng G., Li Z, Guo Y, et al. Mix ratio optimization of cemented coal gangue backfill (CGB) based on response surface method. J Residuals Sci Tech. 2016;13(3):175–184.
  • Godara A, Raabe D. Microstrain localisation measurement in epoxy FRCs during plastic deformation using a digital image correlation technique coupled with scanning electron microscopy. Nondestruct Test Eva. 2008;23(3):229–240.
  • Kohut P.,Holak K, Martowicz A, et al. Experimental assessment of rectification algorithm in vision-based deflection measurement system. Nondestruct Test Eva. 2016;32:1–27.
  • Rajaram S., Vanniamparambil P A, Khan F, et al. Full-field deformation measurements during seismic loading of masonry buildings. Struct Control Hlth. 2017;24(4). DOI:10.1002/stc.1903
  • Li Y, Huang D, Li X. Strain rate dependency of coarse crystal marble under uniaxial compression: strength, deformation and strain energy. Rock Mech Rock Eng. 2014;47(4):1153–1164.
  • 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.
  • Cao S, Song W. Effect of filling interval time on long-term mechanical strength of layered cemented tailing backfill. Adv Mater Sci Eng. 2016. DOI:10.1155/2016/9507852
  • Lacidogna G., Carpinteri A, Manuello A, et al. Acoustic and electromagnetic emissions as precursor phenomena in failure processes. Strain. 2011;47(s2):144–152.
  • Li S, Wu G, Wu H. Study on acoustic emission characteristics of a semirigid base of dense skeleton type during complete uniaxial compression tests. Adv Mater Sci Eng. 2016. DOI:10.1155/2016/9238698
  • Tesarik DR, Seymour JB, Yanske TR. Long-term stability of a backfilled room-and-pillar test section at the Buick Mine, Missouri, USA. Int J Rock Mech Min Sci. 2009;46:1182–1196.

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