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Early Stage Hydration Mechanism of Cellulose Ether Modified Thin Layer Cement Pastes 被引量:7

Early Stage Hydration Mechanism of Cellulose Ether Modified Thin Layer Cement Pastes
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摘要 The early stage hydration mechanism of cellulose ether modified thin layer cement pastes was studied, using brick as the matrix. Samples of 6 h, 24 h, and 3 d and 7 d hydration time were analyzed to study the hydration law on the surface of high water-absorbing matrix. Hydration products were qualitatively and semi-quantitatively analyzed using XRD, TG-DSC-DTG, FTIR and SEM. The experimental results show that there is no enough water for 2 mm thick cement pastes to hydrate, because of rapid water absorption of matrix. Trace amounts of Ca (OH)2 was detected after three days hydration. With the prolongation of hydration time, the category and concentration of hydration products do not change. Compared with 2 mm thick cement pastes, 6 mm thick cement pastes and 10 mm thick cement pastes have lower dehydration rate and water loss. The humidity field of the cement paste show different changes within the same time. 6 mm thick cement paste and 10 mm thick cement pastes have longer time and more water to hydrate. Ca(OH)2 and ettringite were detected after 6 hours hydration and the concentrations of hydration products increased from 24 hours to 7 days. The early stage hydration mechanism of cellulose ether modified thin layer cement pastes was studied, using brick as the matrix. Samples of 6 h, 24 h, and 3 d and 7 d hydration time were analyzed to study the hydration law on the surface of high water-absorbing matrix. Hydration products were qualitatively and semi-quantitatively analyzed using XRD, TG-DSC-DTG, FTIR and SEM. The experimental results show that there is no enough water for 2 mm thick cement pastes to hydrate, because of rapid water absorption of matrix. Trace amounts of Ca (OH)2 was detected after three days hydration. With the prolongation of hydration time, the category and concentration of hydration products do not change. Compared with 2 mm thick cement pastes, 6 mm thick cement pastes and 10 mm thick cement pastes have lower dehydration rate and water loss. The humidity field of the cement paste show different changes within the same time. 6 mm thick cement paste and 10 mm thick cement pastes have longer time and more water to hydrate. Ca(OH)2 and ettringite were detected after 6 hours hydration and the concentrations of hydration products increased from 24 hours to 7 days.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第6期1172-1176,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Youth Fund of National Natural Science Foundation of China (50902107)
关键词 cellulose ether thin layer cement pastes high water-absorbing matrix hydration products cellulose ether thin layer cement pastes high water-absorbing matrix hydration products
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  • 1Pourcheza J, Pescharda A, Grosseaua P, et al. HPMC and HEMC Influ?ence on Cement Hydration[J]. Cement and Concrete Research, 2006, (36):288-294.
  • 2Jenni A, Holzer L, Zurbriggen R, et al. Influence of Polymers on Microstructure and Adhesive Strengtb of Cementitious tile Adhesive Mortars[J]. Cement and Concrete Research, 2005, (35):35-50.
  • 3王培铭.纤维素醚和乳胶粉在商品砂浆中的作用[J].硅酸盐通报,2005,24(5):136-139. 被引量:30
  • 4ZhangGuofang,Wang Peiming,Zhang Yongming. Study of Physical Properties of Cellulose Ethers Modified Cement Paste[C].In: First National mortar Conference Proceedings, 2005.
  • 5Wang Peiming, ZhangGuofang, Wu Jianguo. The Water Reduction and Water Conservation Function of Polymer Powder on Cement Mortar[J]. New Building Materials, 2003, (3):25-28.
  • 6Knapen E, Gemert D Van. Cement Hydration and Microstructure Formation in the Presence of Water-soluble Polymers[J]. Cement and Concrete Research, 2008.
  • 7Paiva H, Silva L, Labrincha J, et al. Effects of a Water-retaining Agent on the Rheological Behaviour of a Single-coat Render Mortar[J]. Cem. Concr.Res., 2006,36 (7):1257-1262.
  • 8Chung D. Review: Use of Polymers for Cement-based Structural Materials[J]. J. Mater. Sci., 2004, (39): 2973-2 978.
  • 9Knapen E. Microstructure Formation in Cement Mortars Modified with Water-soluble Polymers[D]. KU Leuven, 2007.
  • 10Silva D, Roman H, John V. Effects of EVA and HEC Polymers on the Portland Cement Hydration[C]. In: Maultzsch M (Ed.), Proceedings of 11th Congress on Polymers in Concrete, Berlin, 2004:91-97.

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