Research Progress of Adsorption Characteristics of Polycarboxylate Superplasticizers and Effect on Cement Dispersion, Hydration

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Abstract:

Polycarboxylate superplasticizers(PCs) were important admixtures in modern concrete preparation, and working mechanism research was paid close attention since its invention. The international research progress of adsorption characteristics of Polycarboxylate superplasticizers and effect on cement paste dispersion, hydration was introduced, appropriate analysis and discussion were made focusing on existing problems in relational researches in purpose of providing ideas for further research of cement- PCs interactions.

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Advanced Materials Research (Volumes 557-559)

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1099-1102

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July 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yamada, K., Ogawa, S., Hanehara, S., Cement Concrete Res., 31 (2001) 375-383.

Google Scholar

[2] Morin, V., Cohen Tenoudji, F., Feylessoufi, et al. Cement Concrete Res., 31 (2001) 63-71.

DOI: 10.1016/s0008-8846(00)00428-2

Google Scholar

[3] Agarwal, S. K., Masood, I., Malhotra, S. K., Constr. Build. Mater., 14 (2000) 253-259.

Google Scholar

[4] Pierre-Claude, A., Cement Concrete Res., 30 (2000) 1349-1359.

Google Scholar

[5] Tsuneo, T., Masahiro, H., Hideyuki, T., et al., JP58032051. (1981)

Google Scholar

[6] Uchikawa, H., Hanehara, S., Sawaki, D., Cement Concrete Res., 27 (1997) 37-50.

Google Scholar

[7] Yoshioka, K., Sakai, E., Daimon, et al., A., J Am. Ceram. Soc., 80 (1997) 2667-2671.

Google Scholar

[8] Yamada, K., Takahashi, T., Hanehara, S., et al., Cement Concrete Res., 30 (2000) 197-207.

Google Scholar

[9] Sakai, E., Yamada, K., Ohta, A., J. of Advanced Concrete Technology 1 (2003) 16-25.

Google Scholar

[10] Puertas, F., Santos, H., Palacios, M., Martinez-Ramirez, Adv. Cem. Res., 17 (2005) 77-89.

Google Scholar

[11] Yoshioka, K., Tazawa, E., Kawai, K., et al., Cement Concrete Res., 32 (2002) 1507-1513.

Google Scholar

[12] Plank, J., Sachsenhauser, B., Cement Concrete Res., 39 (2009) 1-5.

Google Scholar

[13] Plank, J., Brandl, A., Lummer, N. R., J. Appl. Polym. Sci., 106 (2007) 3889-3894.

Google Scholar

[14] Plank, J., Winter, C., Cement Concrete Res., 38 (2008) 599-605.

Google Scholar

[15] Ran, Q., Somasundaran, P., Miao, C., et al., J. Colloid. Interf. Sci., 336 (2009) 624-633.

Google Scholar

[16] Plank, J., Brandl, A., Zhai, Y., et al., J. Appl. Polym. Sci., 102 (2006) 4341-4347.

Google Scholar

[17] Kazuo, Y., Cement Concrete Res., 41 (2011) 793-798.

Google Scholar

[18] Andersen, P. J., Roy, D. M., et al., Cement Concrete Res., 18 (1988) 980-986.

Google Scholar

[19] Plank, J., Hirsch, C., Cement Concrete Res., 37 (2007) 537-542.

Google Scholar

[20] Zingg, A., Winnefeld, F., Holzer, L., et al., Cement and Concrete Comp., 31 (2009) 153-162.

Google Scholar

[21] Plank, J., Sachsenhauser, B., J. Advanced Concrete Technology, 4 (2006) 233-239.

Google Scholar

[22] Bjornstrom, J., Chandra, S., Mater Struct, 36 (2003) 685-692.

Google Scholar

[23] Winnefeld, F., Becker, S., Pakusch, et al., Cement and Concrete Comp., 29 (2007) 251-262.

Google Scholar

[24] Vikan, H., Justnes, H., Cement Concrete Res., 37 (2007) 1512-1517.

Google Scholar

[25] Konan, K. L., Peyratout, C., Cerbelaud, et al., Appl. Clay Sci., 42 (2008) 252-257.

Google Scholar

[26] Hanehara, S., Yamada, K., Cement Concrete Res., 38 (2008) 175-195.

Google Scholar

[27] Shin, J., Hong, J., Suh, J., et al., Korean J. Chem. Eng., 25 (2008) 1553-1561.

Google Scholar

[28] Phan, T. H., Chaouche, M., Moranville, M., Cement Concrete Res., 36 (2006) 1807-1813.

DOI: 10.1016/j.cemconres.2006.05.028

Google Scholar

[29] Heikal, M., Morsy, M. S., Aiad, I., Ceramics−Silikaty, 50 (2006) 5-14.

Google Scholar

[30] Jon Elvar, W., J. Non-Newton Fluid, 132 (2005) 86-99.

Google Scholar

[31] Pirazzoli, I., Alesiani, M., Capuani, S., et al., Magn. Reson. Imaging, 23 (2005) 277-284.

Google Scholar

[32] Zingg, A., Winnefeld, F., Holzer, L., et al., J. Colloid Interf. Sci., 323 (2008) 301-312.

Google Scholar

[33] Information on http://hal.archives-ouvertes.fr/hal-00420087/en/

Google Scholar

[34] Merlini, M., Artioli, G., Cerulli, T., et al., Cement Concrete Res., 38 (2008) 477-486.

Google Scholar

[35] Zhang, M., Sisomphon, K., Ng, T. S.,et al., Constr. Build. Mater., 24 (2010) 1700-1707.

Google Scholar

[36] Guan, B., Ye, Q., Zhang, J., Lou, et al., Cement Concrete Res., 40 (2010) 253-259.

Google Scholar

[37] Plank, J., Zhimin, D., Keller, H., et al., Cement Concrete Res., 40 (2010) 45-57.

Google Scholar

[38] Zingg, A., Holzer, L., Kaech, A., et al., Cement Concrete Res., 38 (2008) 522-529.

Google Scholar