Effect of Bentonite on the Rheological Behavior of Cement Grout in Presence of Superplasticizer
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32804
Effect of Bentonite on the Rheological Behavior of Cement Grout in Presence of Superplasticizer

Authors: K. Benyounes, A. Benmounah

Abstract:

Cement-based grouts has been used successfully to repair cracks in many concrete structures such as bridges, tunnels, buildings and to consolidate soils or rock foundations. In the present study the rheological characterization of cement grout with water/binder ratio (W/B) is fixed at 0.5. The effect of the replacement of cement by bentonite (2 to 10% wt) in presence of superplasticizer (0.5% wt) was investigated. Several rheological tests were carried out by using controlled-stress rheometer equipped with vane geometry in temperature of 20°C. To highlight the influence of bentonite and superplasticizer on the rheological behavior of grout cement, various flow tests in a range of shear rate from 0 to 200 s-1 were observed. Cement grout showed a non-Newtonian viscosity behavior at all concentrations of bentonite. Three parameter model Herschel- Bulkley was chosen for fitting of experimental data. Based on the values of correlation coefficients of the estimated parameters, The Herschel-Bulkley law model well described the rheological behavior of the grouts. Test results showed that the dosage of bentonite increases the viscosity and yield stress of the system and introduces more thixotropy. While the addition of both bentonite and superplasticizer with cement grout improve significantly the fluidity and reduced the yield stress due to the action of dispersion of SP.

Keywords: Cement grout, bentonite, superplasticizer, viscosity, yield stress.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1097120

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 3513

References:


[1] P.F. Luckham, S. Rossi, ''Colloidal and rheological properties of bentonite suspensions, ''Advances in Colloid and Interface Science, vol.82, pp. 43-92, 1999.
[2] A. Besq, C. Malfoy, A. Pantet, P. Monnet, D. Righi, ''Physicochemical characterisation and flow properties of some bentonite muds, ''Applied Clay Science, vol.23, pp. 275-286, 2003.
[3] N. Gungor, S. Karaoglan, ''Interactions of polyacrylamide polymer with bentonite in aqueous systems, ''Materials Letters, vol.48, pp. 168-175, 2001.
[4] A.H. Al-Kholidi, S. Youhong, S. Zhifeng, ''Rheological Behaviour and Compressive Strength of Cement Bentonite Grout Slurry''. In: F. Wang, M. Miyajima, T. Li, W. Shan, T.F. Fathani (Eds.), Progress of Geo- Disaster Mitigation Technology in Asia, Springer Berlin Heidelberg, 2013, pp. 611-622.
[5] M. Sonebi, D. Hughes, R. Harley, K. Lynch, ''Characterisation of the performance of sustainable groucontaining bentonite for geotechnical applications''. In: The international conference on Sustainable Built Environment for Now and the Future, Hanoi, Vietnam 2012, pp. 1-10.
[6] P. Bangoyina, ''Ageing and large-consolidation of cement-based grouts''. In, University of Twente, Netherlands,, 2008, p. pp 71.
[7] R.A. Silva, L. Schueremans, D.V. Oliveira, K. Dekoning, T. Gyssels, ''On the development of unmodified mud grouts for repairing earth constructions: rheology, strength and adhesion, ''Materials and Structures, vol.45, pp. 1497-1512, 2012.
[8] A. Papo, L. Piani, ''Effect of various superplasticizers on the rheological properties of Portland cement pastes, ''Cement and Concrete Research, vol.34, pp. 2097-2101, 2004.
[9] V.-H. Nguyen, S. Remond, J.-L. Gallias, ''Influence of cement grouts composition on the rheological behaviour, ''Cement and Concrete Research, vol.41, pp. 292-300, 2011.
[10] G. Tattersall, P. Banfill, ''The Rheology of Fresh Concrete, Pitman Adv, ''Publ. Progr., Boston, 1983.
[11] A. Yahia, ''Shear-thickening behavior of high-performance cement grouts — Influencing mix-design parameters, ''Cement and Concrete Research, vol.41, pp. 230-235, 2011.
[12] D.A. Williams, A.W. Saak, H.M. Jennings, ''The influence of mixing on the rheology of fresh cement paste, ''Cement and Concrete Research, vol.29, pp. 1491-1496, 1999.
[13] M. Yang, H.M. Jennings, ''Influences of mixing methods on the microstructure and rheological behavior of cement paste, ''Advanced Cement Based Materials, vol.2, pp. 70-78, 1995.
[14] M. Şahmaran, N. Özkan, S.B. Keskin, B. Uzal, İ.Ö. Yaman, T.K. Erdem, ''Evaluation of natural zeolite as a viscosity-modifying agent for cement-based grouts, ''Cement and Concrete Research, vol.38, pp. 930- 937, 2008.