HAN S, YAN P Y, KONG X M. Study on the compatibility of cement-superplasticizer system based on the amount of free solution[J]. Sci China Tech Sci, 2011, 54(1): 183-189.
[4]
王悦.硅酸盐水泥与高效减水剂相容性的影响因素研究[D].北京:清华大学,2007.
[5]
WANG Y. Influencing factors on the compatibility between Portland cement and superplasticizer[dissertation,in Chinese]. Master Thesis, Tsinghua University, Beijing. 2007.
[6]
MAGAROTTO R, MORATTI F, ZEMINIAN N. Influence of sulfates content in cement on the performances of superplasticizers [C] //Eighth CANMET/ACI lnternational Conference on Superplasticizers and Other Chemical Admixtures in Concrete, Paris, 2006: 195-210.
[7]
HAN S, YAN P Y. Influence of sulfate and soluble alkali content on the compatibility of cement with naphthalene superplasticizer [C] //13th International Congress on the Chemistry of Cement, 2011.
[8]
HAN S, YAN P Y, LIU R G. Study on the hydration product of cement in early age using TEM[J]. Sci China Tech Sci, 2012, 55: 2284-2290.
[9]
JIANG S P, KIM B G, AITEIN P C. Importance of adequate soluble alkali content to ensure cement/superplasticizer compatibility. Cem Concr Res. 1999, 29(1): 71-78..
HAN S, YAN P Y. Influence of sulfate on compatibility of cement and naphthalene superplasticizer[J]. J Chin Ceram Soc, 2010, 38(9): 1765-1770.
[12]
YAMADA K, OGAWA S, HANEHARA S. Controlling of the adsorption and dispersing force of polycaboxylate-type superplasticizer by sulfate ion concentration in aqueous phase[J]. Cem Concr Res, 2001, 31(3): 375-383.
[13]
MAGAROTTO R, TORRESAN I , ZEMINIAN N. Effect of alkaline sulfates on performance of superplasticizers [C] //Proceeding of the 11th International Congress on the Chemistry of Cement: Cement’s Contribution to development in the 21st Century, Durban (South Africa), 2003, May 11-16 2003, Vol2:569-580.
SHANG Y, MIAO C W, LIU J P, et al. J Build Mater(in Chinese), 2010, 13(4): 492-496.
[18]
宋学峰.免振捣自密实混凝土的研究[D].西安:西安建筑科技大学,2002.
[19]
SONG X F. The experimental research of self-compacting concrete[dissertation,in Chinese]. Master Thesis, Xi’an University of Architecture and Technology, Xi’an, 2002.
[20]
HAN S, PLANK J. Mechanistic study on the effect of sulfate ions on polycarboxylate superplasticisers in cement[J]. Adv Cem Res, 2013, 25(4): 200-207.
[21]
PLANK J, SACHSENHAUSER B. Impact of molecular structure on zeta potential and adsorbed conformation of α-allyl-ω-methoxypolyethylene glycol-maleic anhydride superplasticizers[J]. J Adv Concr Technol, 2006, 4(2): 233-239.
[22]
KIM B, JIANG S P, JOLICOEUR C, et al. The adsorption behaveior of PNS superplasticizer and its relation to fluidity of cement paste[J]. Cem Concr Res, 2000, 30(6): 887-893.
[23]
UCHIKAWA H, HANEHARA S, SAWAKI D. The role of steric repulsive force in the dispersion of cement particles in fresh paste prepared with organic admixture[J]. Cem Concr Res, 1997, 27(1): 37-50.
[24]
HANEHARA S, YAMADA K. Interaction between cement and chemical admixture from the point of cement hydration, absorption behaviour of admixture, and paste rheology[J]. Cem Concr Res, 1999, 29(8): 1159-1165.