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Article

Rheological Properties and Early-Age Microstructure of Cement Pastes with Limestone Powder, Redispersible Polymer Powder and Cellulose Ether

1
School of Civil Engineering, Central South University, Changsha 410075, China
2
Hunan Zhongda Design Institution Co., Ltd., Changsha 410075, China
3
China Railway Urban Construction Group Co., Ltd., Changsha 410208, China
*
Author to whom correspondence should be addressed.
Materials 2022, 15(9), 3159; https://doi.org/10.3390/ma15093159
Submission received: 3 April 2022 / Revised: 20 April 2022 / Accepted: 25 April 2022 / Published: 27 April 2022

Abstract

In order to study the synergistic effects of organic and inorganic thickening agents on the rheological properties of cement paste, the rheological parameters, thixotropy cement-paste containing limestone powder (LP), re-dispersible polymer powder (RPP), and hydroxypropyl methylcellulose ether (HPMC) were investigated using the Anton Paar MCR 102 rheometer at different resting times. The early-age hydration process, hydration products, and microstructure were also analyzed with scanning electron microscopy (SEM) and thermogravimetry analyses (TGA). The results showed that the addition of LP, RPP, and HPMC affected the rheological properties of cement paste, but the thickening mechanism between organic and inorganic thickening agents was different. The small amount of LP increased the plastic viscosity but decreased the yield stress of cement paste due to its dense filling effect. Adding 1% of RPP improved the thixotropic property of cement paste by 50%; prolonging the standing time could improve the thixotropic performance by as much as two times. Only 0.035% HPMC added to the cement paste increased the plastic viscosity by 20%, while the yield stress increased nearly twice. The more HPMC added, the more significant effect it showed. Cement paste compounds with LP, RPP, and HPMC balanced the yield stress and plastic viscosity and improved the thixotropy. The C-L6-R1.0-H0.035 paste presented as a pseudoplastic, its rheological indexes were close to one, and it was hardly affected by the resting time. The composite superposition effect of organic and inorganic thickening agents reduced the impact of resting time for all pastes. As the organic thickening component inhibited the hydration more than the LP promoted the hydration of the cement paste, indicating that the C-L6-R1.0-H0.035 paste remained in the particle fusion stage after curing for three days, as shown by the SEM images.
Keywords: rheology; microstructure; cement-based material; organic and inorganic thickening agent; complementary effect rheology; microstructure; cement-based material; organic and inorganic thickening agent; complementary effect

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MDPI and ACS Style

Feng, K.; Xu, Z.; Zhang, W.; Ma, K.; Shen, J.; Hu, M. Rheological Properties and Early-Age Microstructure of Cement Pastes with Limestone Powder, Redispersible Polymer Powder and Cellulose Ether. Materials 2022, 15, 3159. https://doi.org/10.3390/ma15093159

AMA Style

Feng K, Xu Z, Zhang W, Ma K, Shen J, Hu M. Rheological Properties and Early-Age Microstructure of Cement Pastes with Limestone Powder, Redispersible Polymer Powder and Cellulose Ether. Materials. 2022; 15(9):3159. https://doi.org/10.3390/ma15093159

Chicago/Turabian Style

Feng, Kaiwen, Zhanjun Xu, Weizheng Zhang, Kunlin Ma, Jingtao Shen, and Mingwen Hu. 2022. "Rheological Properties and Early-Age Microstructure of Cement Pastes with Limestone Powder, Redispersible Polymer Powder and Cellulose Ether" Materials 15, no. 9: 3159. https://doi.org/10.3390/ma15093159

APA Style

Feng, K., Xu, Z., Zhang, W., Ma, K., Shen, J., & Hu, M. (2022). Rheological Properties and Early-Age Microstructure of Cement Pastes with Limestone Powder, Redispersible Polymer Powder and Cellulose Ether. Materials, 15(9), 3159. https://doi.org/10.3390/ma15093159

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