Have a personal or library account? Click to login

Hydromechanical Characterization of Raw Earth Mortar – Stabilizing Cement and Lime

Open Access
|Dec 2022

References

  1. Al-Khafaji, ZA, and WH Craig. 2000. “Drainage and reinforcement of soft clay tank foundation by sand columns.” Géotechnique 50 (6):709-713.10.1680/geot.2000.50.6.709
  2. Al-Rawas, Amer Ali, and Mattheus FA Goosen. 2006. “Expansive soils: recent advances in characterization and treatment.”10.1201/9780203968079
  3. Alonso, EE, Antonio Gens, and A Lloret. 2000. “Precompression design for secondary settlement reduction.” Géotechnique 50 (6):645-656.10.1680/geot.2000.50.6.645
  4. Bahar, Ramdane, M Benazzoug, and S Kenai. 2004. “Performance of compacted cement-stabilised soil.” Cement and concrete composites 26 (7):811-820.10.1016/j.cemconcomp.2004.01.003
  5. Bell, FG, and JM Coulthard. 1990. “Stabilization of clay soils with lime.” Municipal Engineer 7 (3).
  6. Croce, P, and A Flora. 2000. “Analysis of single-fluid jet grouting.” Géotechnique 50 (6):739-748.10.1680/geot.2000.50.6.739
  7. de Almeida, MSS, MES Marques, and M Baroni. 2010. “Geotechnical parameters of very soft clays from CPTu.”
  8. Ghobadi, MH, Y Abdilor, and R Babazadeh. 2014. “Stabilization of clay soils using lime and effect of pH variations on shear strength parameters.” Bulletin of Engineering Geology and the Environment 73 (2):611-619.10.1007/s10064-013-0563-7
  9. Guettala, A, A Abibsi, and H Houari. 2006. “Durability study of stabilized earth concrete under both laboratory and climatic conditions exposure.” Construction and Building Materials 20 (3):119-127.10.1016/j.conbuildmat.2005.02.001
  10. Houben, H, V Rigassi, and P Garnier. 1996. “Blocs de terre comprimée: équipements de production.” CRATerre, Bruxelles, Belgique 149.
  11. Kemer, H, R Bouras, M Sonebi, N Mesboua, and A Benmounah. 2021. “Slump Test: A New Empirical Model for High Yield Stress Materials.” Journal of Applied Engineering Sciences 11 (2).10.2478/jaes-2021-0014
  12. Kemer, Houssam, Rachid Bouras, Noureddine Mesboua, Mohammed Sonebi, and Oliver Kinnane. 2021. “Shear-thickening behavior of sustainable cement paste—Controlling physical parameters of new sources of supplementary cementitious materials.” Construction and Building Materials 310:125277.10.1016/j.conbuildmat.2021.125277
  13. Mesboua, N, K Benyounes, S Kennouche, Y Ammar, A Benmounah, and H Kemer. 2021. “CALCINATED BENTONITE AS SUPPLEMENTARY CEMENTITIOUS MATERIALS IN CEMENT-BASED MORTAR.” Journal of Applied Engineering Sciences 11 (1).10.2478/jaes-2021-0004
  14. Moseley, Michael P, and Klaus Kirsch. 2004. Ground improvement: CRC Press.10.1201/9780203489611
  15. Muntohar, Agus Setyo. 2011. “Engineering characteristics of the compressed-stabilized earth brick.” Construction and Building Materials 25 (11):4215-4220.10.1016/j.conbuildmat.2011.04.061
  16. NF XP 13-901 Compressed earth blocks for walls and partitions: definitions – Specifications - test methods - acceptance conditions.
  17. NF6 P 15-467 standard AFNOR, Recueil de Normes Francaises, Batiment Beton et Constituants du Beton Paris; 1984
  18. P’Kla, Abalo. 2002. “Caractérisation en compression simple des blocs de terre comprimée (BTC): application aux maçonneries” BTC-Mortier de terre”.” Lyon, INSA.
  19. Reddy, BV Venkatarama, and P Prasanna Kumar. 2010. “Embodied energy in cement stabilised rammed earth walls.” Energy and Buildings 42 (3):380-385.10.1016/j.enbuild.2009.10.005
  20. Rogers, CDF, GLENDINNING, and TEJ Roff. 1997. “Lime modification of clay soils for construction expediency.” Proceedings of the Institution of Civil Engineers-Geotechnical Engineering 125 (4):242-249.10.1680/igeng.1997.29660
  21. Saadia, MAHMOUDI. 2014. “Le béton de terre stabilisée renforcée par des fibres.” UNIVERSITE DE M’SILA FACULTE DE TECHNOLOGIE.
  22. Slocombe, BC, AL Bell, and JI Baez. 2000. “The densification of granular soils using vibro methods.” Géotechnique 50 (6):715-725.10.1680/geot.2000.50.6.715
  23. Venkatarama Reddy, BV, and Ajay Gupta. 2005. “Characteristics of soil-cement blocks using highly sandy soils.” Materials and structures 38 (6):651-658.10.1007/BF02481596
Language: English
Page range: 203 - 208
Submitted on: Aug 11, 2022
Accepted on: Aug 31, 2022
Published on: Dec 21, 2022
Published by: University of Oradea, Civil Engineering and Architecture Faculty
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2022 M. Messis, A. Benaissa, N. Bouhamou, published by University of Oradea, Civil Engineering and Architecture Faculty
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.