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侯运炳等:冻融循环对全尾砂固结体力学性能影响及无损检测研究 ·1443· andesitic rocks (Sille-Konya/Turkey)used in construction 22(3):291 building.J Afr Earth Sci,2015,109:96 (李俊如,高建光,王耀辉.超声波检测混凝土裂缝及裂缝成因 [6]Xu G M.Liu Q S.Analysis of mechanism of rock failure due to 分析.岩土力学,2001,22(3):291) freeze-thaw cycling and mechanical testing study on frozen- [14]Wang W H,Wan J.The experimental study on the role of freeze- thawed rocks.Chin J Rock Mech Eng,2005,24(17):3076 thaw cycles on uniaxial compressive strength influence in (徐光苗,刘泉声.岩石冻融破坏机理分析及冻融力学试验研究 carbonate saline soil.J Changchun Inst Technol Nat Sci Ed,2016, 岩石力学与工程学报,2005,24(17):3076) 17(3):6 [7]Fu W.Wang R.Experimental study of electrical resistivity and (王文华,万健.冻融循环作用对碳酸盐渍土单轴抗压强度影响 deformation characteristics of saturated silty clay during repeated 的试验研究.长春工程学院学报:自然科学版,2016,17(3):6) freeze-thaw cycles.Rock Soil Mech,2010,31(3):769 [15]Xu W B,Du J H,Song W D,et al.Experiment on the mechanism (付伟,汪稔.饱和粉质黏土反复冻融电阻率及变形特性试验研 of consolidating backfill body of extra-fine grain unclassified 究.岩土力学,2010,31(3):769) tailings and cementitious materials.Rock Soil Mech,2013.34(8): [8]Fu W.Wang R.Hu M J,et al.Study of relationship between 2295 uniaxial compressive strength and electrical resistivity of frozen (徐文彬,杜建华,宋卫东,等.超细全尾砂材料胶凝成岩机理试 soil under different temperatures.Rock Soil Mech,2009,30(1):73 验.岩土力学,2013,34(8):2295) (付伟,汪稔,胡明鉴,等.不同温度下冻土单轴抗压强度与电阻 [16]Hu X T,Liang B,Chen Y J,et al.Mechanical and microstructural 率关系研究.岩土力学,2009,30(1):73) properties changes of solidified sewage sludge due to cyclic [9] Liu QS.Huang S B,Kang YS,et al.Fatigue damage model and freezing and thawing.Rock Soil Mech,2016,37(5):1317 evaluation index for rock mass under freezing-thawing cycles. (胡学涛,梁冰,陈亿军,等.冻融循环对固化污泥力学及微观结 Chin J Rock Mech Eng,2015,34(6):1116 构特性影响.岩土力学,2016,37(5):1317) (刘泉声,黄诗冰,康永水,等.岩体冻融疲劳损伤模型与评价指 [17]Cheng H Y,Wu S C,Wu A X,et al.Grading characterization and 标研究.岩石力学与工程学报,2015,34(6):1116) yield stress prediction based on paste stability coefficient.ChinJ [10]Wei Z A,Yang Y H,Xu J J,et al.Experiment study on the Eg,2018,40(10:1168 mechanical properties of frozen tailings by uniaxial compression (程海勇,吴顺川,吴爱祥,等.基于膏体稳定系数的级配表征及 tests.J Northeastern Univ Nat Sci,2016,37(1):123 屈服应力预测.工程科学学报,2018,40(10):1168) (魏作安,杨永浩,徐佳俊,等.人工冻结尾矿力学特性单轴压缩 [18]Viran P A G,Binal A.Effects of repeated freeze-thaw cycles on 试验研究.东北大学学报:自然科学版,2016,37(1):123) physico-mechanical properties of cohesive soils.ArabianGsci, [11]Chang D,Liu J K,Li X,et al.Experiment study of effects of 2018.11:250 freezing-thawing cycles on mechanical properties of Qinghat-Tibet [19]Zhang Y,Bing H,Yang C S.Influences of freeze-thaw cycles on silty sand.Chin J Rock Mech Eng,2014,33(7):1496 mechanical porperties of silty clay based on SEM and MIP test. (常丹,刘建坤,李旭,等.冻融循环对青藏粉砂士力学性质影响 Chin J Rock Mech Eng,2015,34(Suppl 1):3597 的试验研究.岩石力学与工程学报,2014.33(7):1496) (张英,邴慧,杨成松.基于SEM和MP的冻融循环对粉质黏土强 [12]Deng D Q,Gao Y T,Wu S C,et al.Integrality detection of backfill 度影响机制研究.岩石力学与工程学报,2015,34(增刊1上3597) based on acoustic wave velocity testing.J Uniy Sci Technol [20]Koohestani B.Effect of saline admixtures on mechanical and Beijing,2010,32(10):1248 microstructural properties of cementitious matrices containing (邓代强,高永涛,吴顺川,等.基于声波测速的充填体完整性检 tailings.Construction Building Mater,2017,156:1019 测.北京科技大学学报,2010,32(10):1248) [21]Aldaood A,Bouasker M,Al-Mukhtar M.Impact of freeze-thaw [13]Li J R,Gao J G,Wang Y H.Supersonic wave testing on concrete cycles on mechanical behaviour of lime stabilized gypseous soils. crack depth and analysis of crack initiation.Rock Soil Mech,2001, Cold Regions Sci Technol,2014,99:38andesitic  rocks  (Sille-Konya/Turkey)  used  in  construction building. J Afr Earth Sci, 2015, 109: 96 Xu G M, Liu Q S. Analysis of mechanism of rock failure due to freeze-thaw  cycling  and  mechanical  testing  study  on  frozen￾thawed rocks. Chin J Rock Mech Eng, 2005, 24(17): 3076 (徐光苗, 刘泉声. 岩石冻融破坏机理分析及冻融力学试验研究. 岩石力学与工程学报, 2005, 24(17):3076 ) [6] Fu  W,  Wang  R.  Experimental  study  of  electrical  resistivity  and deformation characteristics of saturated silty clay during repeated freeze-thaw cycles. Rock Soil Mech, 2010, 31(3): 769 (付伟, 汪稔. 饱和粉质黏土反复冻融电阻率及变形特性试验研 究. 岩土力学, 2010, 31(3):769 ) [7] Fu  W,  Wang  R,  Hu  M  J,  et  al.  Study  of  relationship  between uniaxial  compressive  strength  and  electrical  resistivity  of  frozen soil under different temperatures. Rock Soil Mech, 2009, 30(1): 73 (付伟, 汪稔, 胡明鉴, 等. 不同温度下冻土单轴抗压强度与电阻 率关系研究. 岩土力学, 2009, 30(1):73 ) [8] Liu Q S, Huang S B, Kang Y S, et al. Fatigue damage model and evaluation  index  for  rock  mass  under  freezing-thawing  cycles. Chin J Rock Mech Eng, 2015, 34(6): 1116 (刘泉声, 黄诗冰, 康永水, 等. 岩体冻融疲劳损伤模型与评价指 标研究. 岩石力学与工程学报, 2015, 34(6):1116 ) [9] Wei  Z  A,  Yang  Y  H,  Xu  J  J,  et  al.  Experiment  study  on  the mechanical  properties  of  frozen  tailings  by  uniaxial  compression tests. J Northeastern Univ Nat Sci, 2016, 37(1): 123 (魏作安, 杨永浩, 徐佳俊, 等. 人工冻结尾矿力学特性单轴压缩 试验研究. 东北大学学报: 自然科学版, 2016, 37(1):123 ) [10] Chang  D,  Liu  J  K,  Li  X,  et  al.  Experiment  study  of  effects  of freezing-thawing cycles on mechanical properties of Qinghat-Tibet silty sand. Chin J Rock Mech Eng, 2014, 33(7): 1496 (常丹, 刘建坤, 李旭, 等. 冻融循环对青藏粉砂土力学性质影响 的试验研究. 岩石力学与工程学报, 2014, 33(7):1496 ) [11] Deng D Q, Gao Y T, Wu S C, et al. Integrality detection of backfill based  on  acoustic  wave  velocity  testing. J Univ Sci Technol Beijing, 2010, 32(10): 1248 (邓代强, 高永涛, 吴顺川, 等. 基于声波测速的充填体完整性检 测. 北京科技大学学报, 2010, 32(10):1248 ) [12] Li J R, Gao J G, Wang Y H. Supersonic wave testing on concrete crack depth and analysis of crack initiation. 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Rock Soil Mech, 2016, 37(5): 1317 (胡学涛, 梁冰, 陈亿军, 等. 冻融循环对固化污泥力学及微观结 构特性影响. 岩土力学, 2016, 37(5):1317 ) [16] Cheng H Y, Wu S C, Wu A X, et al. Grading characterization and yield stress prediction based on paste stability coefficient. Chin J Eng, 2018, 40(10): 1168 (程海勇, 吴顺川, 吴爱祥, 等. 基于膏体稳定系数的级配表征及 屈服应力预测. 工程科学学报, 2018, 40(10):1168 ) [17] Viran P A G, Binal A. Effects of repeated freeze–thaw cycles on physico-mechanical properties of cohesive soils. Arabian J Geosci, 2018, 11: 250 [18] Zhang Y, Bing H, Yang C S. Influences of freeze-thaw cycles on mechanical  porperties  of  silty  clay  based  on  SEM  and  MIP  test. Chin J Rock Mech Eng, 2015, 34(Suppl 1): 3597 (张英, 邴慧, 杨成松. 基于SEM和MIP的冻融循环对粉质黏土强 度影响机制研究. 岩石力学与工程学报, 2015, 34(增刊1): 3597) [19] Koohestani  B.  Effect  of  saline  admixtures  on  mechanical  and microstructural  properties  of  cementitious  matrices  containing tailings. Construction Building Mater, 2017, 156: 1019 [20] Aldaood  A,  Bouasker  M,  Al-Mukhtar  M.  Impact  of  freeze –thaw cycles on mechanical behaviour of lime stabilized gypseous soils. Cold Regions Sci Technol, 2014, 99: 38 [21] 侯运炳等: 冻融循环对全尾砂固结体力学性能影响及无损检测研究 · 1443 ·
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