[1] 王宝民,刘 伟.偏高岭土高性能混凝土氯离子抗渗性试验研究 [J].防灾减灾工程学报,2010,30(S1):369-372. [2] 南雪丽,杨蓝蓝,唐维斌,等.钢渣粒度分布对钢渣水泥水化特性影响的灰度分析 [J].兰州理工大学学报,2021,47(5):138-143. [3] 陈振斌,周永山,陈长军,等.反相乳液合成阳离子聚丙烯酰胺絮凝剂及其表征 [J].兰州理工大学学报,2019,45(4):16-21. [4] LUKASIEWICZ S J,REED J S.Phase development on reacting phosphoric acid with various Bayer-process aluminas [J].American Ceramic Society Bulletin,1987,66(7):1134-1138. [5] 董 猛,马建栋,李云峰.偏高岭土掺合料对水泥胶砂强度的影响 [J].材料科学与工程学报,2020,38(2):295-300. [6] 卢都友,张少华,徐江涛,等.石灰石微粉与偏高岭土复合对水泥强度和水化产物的影响 [J].硅酸盐学报,2017,45(5):662-667. [7] 罗旌旺,卢都友,许 涛,等.偏高岭土对硅酸盐水泥浆体干燥收缩行为的影响及机理 [J].硅酸盐学报,2011,39(10):1687-1693. [8] 刘志宁,何富强,卓卫东,等.偏高岭土/粉煤灰-磷酸钾镁水泥体系早期水化研究 [J].硅酸盐通报,2020,39(5):1397-1402,1407. [9] 欧志华,刘 广,黄春华,等.纤维素醚改性水泥浆的粘度变化研究 [J].材料导报,2016,30(14):135-139. [10] 李文杰,曾翠云,万德刚.可再分散乳胶粉在高强自流平砂浆中的应用研究 [J].新型建筑材料,2019,46(11):106-107,118. [11] 贾 亮,连尚承.石灰-粉煤灰-水泥稳定碎石的力学性能试验 [J].兰州理工大学学报,2023,49(2):125-129. [12] PERROT A,LECOMPTE T,KHELIFI H,et al.Yield stress and bleeding of fresh cement pastes [J].Cement and Concrete Research,2012,42(7):937-944. [13] LOWKE D,GEHLEN C.The zeta potential of cement and additions in cementitious suspensions with high solid fraction [J].Cement and Concrete Research,2017,95:195-204. [14] ROUSSEL N.聚合物和新拌混凝土性能研究进展[J].硅酸盐学报,2015,43(10):1401-1407. [15] YAHIA A.Effect of solid concentration and shear rate on shear-thickening response of high-performance cement suspensions [J].Construction and Building Materials,2014,53:517-521. [16] BALA M,ZENTAR R,BOUSTINGORRY P.Comparative study of the yield stress determination of cement pastes by different methods [J].Materials and Structures,2019,52(5):102. [17] WANG J,LIU E.Upcycling waste seashells with cement:rheology and early-age properties ofPortland cement paste [J].Resources,Conservation and Recycling,2020,155:104680. [18] JEONG J,CHUTA E,RAMÉZANI H,et al.Rheological properties for fresh cement paste from colloidal suspension to the three-element Kelvin-Voigt model [J].Rheologica Acta,2020,59(1):47-61. [19] MAHMOODZADEH F,CHIDIAC S E.Rheological models for predicting plastic viscosity and yield stress of fresh concrete [J].Cement and Concrete Research,2013,49:1-9. [20] VANCE K,SANT G,NEITHALATH N.The rheology of cementitious suspensions:a closer look at experimental parameters and property determination using common rheological models [J].Cement and Concrete Composites,2015,59:38-48. [21] 李世华,梁丽敏,马敏超,等.偏高岭土基复合掺合料对混凝土工作性能及力学性能的影响 [J].建筑施工,2019,41(10):1939-1942. [22] 高南箫,冉千平,乔 敏.水泥浆体系用脂肪酸盐类触变剂的研制与性能 [J].建筑材料学报,2017,20(2):234-238. [23] 朱伯铨,王玉龙,李享成.含镁铝尖晶石的铝酸钙水泥中物相分布状态对流变特性的影响 [J].硅酸盐学报,2014,42(11):1383-1388. [24] RAMLI M,TABASSI A A.Effects of polymer modification on the permeability of cement mortars under different curing conditions:a correlational study that includes pore distributions,water absorption and compressive strength [J].Construction and Building Materials,2012,28(1):561-570. [25] 李秋超,范颖芳,李学良.纳米偏高岭土水泥浆颗粒水膜厚度与流变参数相关性 [J].东南大学学报(自然科学版),2022,52(2):273-281. [26] ZHANG Q,LIU J,LIU J,et al.Effect of superplasticizers on apparent viscosity of cement-based material with a low water-binder ratio [J].Journal of Materials in Civil Engineering,2016,28(9):04016085. [27] HARUNA S,FALL M.Time-and temperature-dependent rheological properties of cemented paste backfill that contains superplasticizer [J].Powder Technology,2020,360:731-740. |