Citation: | KOU Yun-peng, GUO Mo-chuan, TAN Yu-ye, QI Zhao-jun, SONG Ze-pu, SONG Wei-dong. Early hydration heat release and strength evolution of cemented backfill with graded fine tailings[J]. Chinese Journal of Engineering, 2023, 45(8): 1293-1303. doi: 10.13374/j.issn2095-9389.2022.07.24.002 |
[1] |
趙康, 伍俊, 嚴雅靜, 等. 尾砂膠結充填體裂紋演化多尺度特征. 巖石力學與工程學報, 2022, 44(08):1626 doi: 10.13722/j.cnki.jrme.2021.0900
Zhao K, Wu J, Yan Y J, et al. Multi-scale characteristics of crack evolution in cemented tailings backfill. Chin J Rock Mech Eng, 2022, 44(08): 1626 doi: 10.13722/j.cnki.jrme.2021.0900
|
[2] |
張修香, 喬登攀, 黃溫鋼. 廢石-分級尾砂高濃度充填料漿的黏度及多因素影響規律. 中國礦業, 2018, 27(11):133
Zhang X X, Qiao D P, Huang W G. Viscosity of high density filling slurry with waste rock-classified tailings and the law of multi-factor influence. China Min Mag, 2018, 27(11): 133
|
[3] |
王永巖, 周彤彤, 于卓群, 等. 不同養護齡期下分層膠結充填體力學特性研究. 礦業研究與開發, 2021, 41(9):52 doi: 10.13827/j.cnki.kyyk.2021.09.010
Wang Y Y, Zhou T T, Yu Z Q, et al. Study on the mechanical properties of layered cemented backfill under different curing ages. Min Res Dev, 2021, 41(9): 52 doi: 10.13827/j.cnki.kyyk.2021.09.010
|
[4] |
趙康, 黃明, 嚴雅靜, 等. 不同灰砂比尾砂膠結充填材料組合體力學特性及協同變形研究. 巖石力學與工程學報, 2021, 40(增刊 1):2781 doi: 10.13722/j.cnki.jrme.2020.0692
Zhao K, Huang M, Yan Y J, et al. Mechanical properties and synergistic deformation characteristics of tailings cemented filling assembled material body with different cement–tailings ratios. Chin J Rock Mech Eng, 2021, 40(Suppl 1): 2781 doi: 10.13722/j.cnki.jrme.2020.0692
|
[5] |
余姚, 饒運章, 許威. 膨潤土對膠結充填體力學特性的影響. 礦業研究與開發, 2019, 39(11):91 doi: 10.13827/j.cnki.kyyk.2019.11.018
Yu Y, Rao Y Z, Xu W. Effect of bentonite on mechanical properties of cemented backfill. Min Res Dev, 2019, 39(11): 91 doi: 10.13827/j.cnki.kyyk.2019.11.018
|
[6] |
陳順滿, 王偉, 吳愛祥, 等. 養護壓力對膏體充填體強度影響規律及機理分析. 中國有色金屬學報, 2021, 31(12):3740
Chen S M, Wang W, Wu A X, et al. Influence rules of curing stress on strength of cemented paste backfill materials and its mechanism analysis. Chin J Nonferrous Met, 2021, 31(12): 3740
|
[7] |
李欣, 郭利杰, 許文遠, 等. 某鐵礦全尾砂膠結充填體力學性能研究. 中國礦業, 2019, 28(增刊 2):420
Li X, Guo L J, Xu W Y, et al. Study on mechanical properties of cemented filling with full tailings in an iron mine. China Min Mag, 2019, 28(Suppl 2): 420
|
[8] |
王海龍, 郭惟嘉, 陳紹杰, 等. 煤礦充填膏體力學性質試驗研究. 礦業研究與開發, 2012, 32(4):8 doi: 10.13827/j.cnki.kyyk.2012.04.017
Wang H L, Guo W J, Chen S J, et al. Experimental study on mechanical properties of paste filling in coal mine. Min Res Dev, 2012, 32(4): 8 doi: 10.13827/j.cnki.kyyk.2012.04.017
|
[9] |
周科平, 劉維, 周彥龍, 等. 不同滲透力的類充填體力學特性及損傷軟化本構模型研究. 巖土力學, 2019, 40(10):3724 doi: 10.16285/j.rsm.2018.1305
Zhou K P, Liu W, Zhou Y L, et al. Mechanical properties and damage-softening constitutive model of backfill with different osmotic pressures. Rock Soil Mech, 2019, 40(10): 3724 doi: 10.16285/j.rsm.2018.1305
|
[10] |
李占金, 程豪杰, 楊美宏. 基于正交試驗的膠結充填體力學性能及配比優化方案研究. 礦業研究與開發, 2019, 39(5):95 doi: 10.13827/j.cnki.kyyk.2019.05.019
Li Z J, Cheng H J, Yang M H. Study on mechanical property and proportion optimization of cemented filling body based on orthogonal test. Min Res Dev, 2019, 39(5): 95 doi: 10.13827/j.cnki.kyyk.2019.05.019
|
[11] |
閆保旭, 朱萬成, 侯晨, 等. 充填體應力分布理論分析及數值模擬對比研究. 東北大學學報(自然科學版), 2019, 40(12):1773
Yan B X, Zhu W C, Hou C, et al. A comparative study on the stress distribution in mine backfill through theoretical and numerical analysis. J Northeast Univ, 2019, 40(12): 1773
|
[12] |
劉超, 韓斌, 孫偉, 等. 高寒地區廢石破碎膠結充填體強度特性試驗研究與工業應用. 巖石力學與工程學報, 2015, 34(1):139 doi: 10.13722/j.cnki.jrme.2015.01.015
Liu C, Han B, Sun W, et al. Experimental study of strength of backfillings of cemented rock debris and its application under low temperature condition. Chin J Rock Mech Eng, 2015, 34(1): 139 doi: 10.13722/j.cnki.jrme.2015.01.015
|
[13] |
溫震江, 高謙, 楊志強, 等. 金川鎳渣充填膠凝材料力學性能與水化機理. 中國有色金屬學報, 2021, 31(4):1074 doi: 10.11817/j.ysxb.1004.0609.2021-36585
Wen Z J, Gao Q, Yang Z Q, et al. Mechanical properties and hydration mechanism of Jinchuan nickel slag filling cementitious material. Chin J Nonferrous Met, 2021, 31(4): 1074 doi: 10.11817/j.ysxb.1004.0609.2021-36585
|
[14] |
張強, 何宏平, 陶奇. 菱鎂礦煅燒參數優化及其產物水化動力學解析. 中國有色金屬學報, 2016, 26(3):699 doi: 10.19476/j.ysxb.1004.0609.2016.03.027
Zhang Q, He H P, Tao Q. Parameters optimization of magnesite calcination and hydration dynamics of optimized sample. Chin J Nonferrous Met, 2016, 26(3): 699 doi: 10.19476/j.ysxb.1004.0609.2016.03.027
|
[15] |
Kumar S, Gupta R C, Shrivastava S. Effective utilisation of quartz sandstone mining wastes: A technical note on its thermal resistance. J Clean Prod, 2017, 140: 1129 doi: 10.1016/j.jclepro.2016.10.053
|
[16] |
陳琳, 潘如意, 沈曉冬, 等. 粉煤灰–礦渣–水泥復合膠凝材料強度和水化性能. 建筑材料學報, 2010, 13(3):380 doi: 10.3969/j.issn.1007-9629.2010.03.022
Chen L, Pan R Y, Shen X D, et al. Strength and hydration property of fly ash–slag–cement composite cementitious material. J Build Mater, 2010, 13(3): 380 doi: 10.3969/j.issn.1007-9629.2010.03.022
|
[17] |
Wu D, Cai S J, Huang G. Coupled effect of cement hydration and temperature on rheological properties of fresh cemented tailings backfill slurry. Trans Nonferrous Met Soc China, 2014, 24(9): 2954 doi: 10.1016/S1003-6326(14)63431-2
|
[18] |
陳松, 劉汝生, 王起才. 普通硅酸鹽水泥水化熱影響因素試驗研究. 鐵道建筑, 2014, 54(6):159 doi: 10.3969/j.issn.1003-1995.2014.06.46
Chen S, Liu R S, Wang Q C. Experimental study on affected factors of hydration heat of common silicate cement. Railw Eng, 2014, 54(6): 159 doi: 10.3969/j.issn.1003-1995.2014.06.46
|
[19] |
李國新, 仝萬亮, 張歌, 等. 粉煤灰和礦粉對磷酸鎂水泥性能的影響. 硅酸鹽通報, 2016, 35(2):352 doi: 10.16552/j.cnki.issn1001-1625.2016.02.003
Li G X, Tong W L, Zhang G, et al. Influence of fly ash and slag on the properties of magnesium phosphate cement. Bull Chin Ceram Soc, 2016, 35(2): 352 doi: 10.16552/j.cnki.issn1001-1625.2016.02.003
|
[20] |
毋林林, 康天合, 尹博, 等. 粉煤灰膏體充填材料水化放熱特性的微量熱測試與分析. 煤炭學報, 2015, 40(12):2801 doi: 10.13225/j.cnki.jccs.2014.1773
Wu L L, Kang T H, Yin B, et al. Microcalorimetric test and analysis of hydration heat of fly ash paste-filling material. J China Coal Soc, 2015, 40(12): 2801 doi: 10.13225/j.cnki.jccs.2014.1773
|
[21] |
陳秋松, 張琦, 齊沖沖, 等. 磷石膏充填體強度和浸出毒性的溫變規律. 中國有色金屬學報, 2021, 31(4):1084
Chen Q S, Zhang Q, Qi C C, et al. Temperature-depending characteristics of strength and leaching toxicity of phosphogympsum-based cemented paste backfill. Chin J Nonferrous Met, 2021, 31(4): 1084
|
[22] |
戴豐樂, 汪宏濤, 丁建華, 等. 氧化鎂與磷酸鹽質量比對磷酸鎂水泥水化歷程的影響. 硅酸鹽學報, 2017, 45(8):1144 doi: 10.14062/j.issn.0454-5648.2017.08.13
Dai F L, Wang H T, Ding J H, et al. Effect of magnesia/phosphate ratio on hydration processes of magnesium phosphate cement. J Chin Ceram Soc, 2017, 45(8): 1144 doi: 10.14062/j.issn.0454-5648.2017.08.13
|
[23] |
常澤, 王立成. 混凝土內部溫度場的細觀數值模擬研究. 武漢大學學報(工學版), 2017, 50(6):938 doi: 10.14188/j.1671-8844.2017-06-021
Chang Z, Wang L C. Mesoscopic numerical simulation of the temperature field of concrete. Eng J Wuhan Univ, 2017, 50(6): 938 doi: 10.14188/j.1671-8844.2017-06-021
|
[24] |
張濤, 楊維好, 陳國華, 等. 大體積高性能混凝土凍結井壁水化熱溫度場實測與分析. 采礦與安全工程學報, 2016, 33(2):290 doi: 10.13545/j.cnki.jmse.2016.02.016
Zhang T, Yang W H, Chen G H, et al. Monitoring and analysis of hydration heat temperature field for high performance mass concrete freezing shaft lining. J Min &Saf Eng, 2016, 33(2): 290 doi: 10.13545/j.cnki.jmse.2016.02.016
|
[25] |
(夏才初, 劉志方, 肖素光, 等. 水化熱對地源熱泵地埋管夏季換熱效果的影響. 同濟大學學報(自然科學版), 2015, 43(9):1332 doi: 10.11908/j.issn.0253-374x.2015.09.008
Xia C C, Liu Z F, Xiao S G, et al. Influence of hydration heat on heat transfer effect of ground heat exchanger of ground source heat pump in summer. J Tongji Univ, 2015, 43(9): 1332 doi: 10.11908/j.issn.0253-374x.2015.09.008
|
[26] |
Koohestani B, Khodadadi Darban A, Mokhtari P. A comparison between the influence of superplasticizer and organosilanes on different properties of cemented paste backfill. Constr Build Mater, 2018, 173: 180 doi: 10.1016/j.conbuildmat.2018.03.265
|
[27] |
Yang Y Y, Cui Z D, Li X Q, et al. Development and materials characteristics of fly ash- slag-based grout for use in sulfate-rich environments. Clean Techn Environ Policy, 2016, 18(3): 949 doi: 10.1007/s10098-015-1040-8
|
[28] |
翟成, 孫勇, 范宜仁, 等. 低場核磁共振技術在煤孔隙結構精準表征中的應用與展望. 煤炭學報, 2022, 47(2):828
Zhai C, Sun Y, Fan Y R, et al. Application and prospect of low-field nuclear magnetic resonance technology in accurate characterization of coal pore structure. J China Coal Soc, 2022, 47(2): 828
|
[29] |
陳蛟龍, 張娜, 李恒, 等. 赤泥基似膏體充填材料水化特性研究. 工程科學學報, 2017, 39(11):1640
Chen J L, Zhang N, Li H, et al. Hydration characteristics of red-mud based paste-like backfill material. Chin J Eng, 2017, 39(11): 1640
|
[30] |
劉樹龍, 王發剛, 李公成, 等. 基于響應面法的復合充填料漿配比優化及微觀結構影響機制. 復合材料學報, 2021, 38(8):2724 doi: 10.13801/j.cnki.fhclxb.20201013.001
Liu S L, Wang F G, Li G C, et al. Optimization of mixture ratio and microstructure influence mechanism of composite filling slurry based on response surface method. Acta Mater Compos Sin, 2021, 38(8): 2724 doi: 10.13801/j.cnki.fhclxb.20201013.001
|