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SURFACE WATERPROOFING METHODS OF CLAY BRICKS USED IN VERNACULAR CONSTRUCTION

Stud. Eng. GABRIELA CALATAN

First published: 2015-06-20https://doi.org/10.5593/sgem2015/b62/s26.038View metrics

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Publication details

Title
SURFACE WATERPROOFING METHODS OF CLAY BRICKS USED IN VERNACULAR CONSTRUCTION
Authors
Stud. Eng. GABRIELA CALATAN
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, NANO, BIO AND GREEN TECHNOLOGIES FOR A SUSTAINABLE FUTURE
Publisher
Stef92 Technology
Year
2015
Pages
287-294
ISSN
1314-2704
ISBN
978-619-7105-43-8
Language
en
Publication type
Conference Paper
References30
  1. Bahobail M. A., The Mud Additives and Their Effect on Thermal Conductivity of Adobe Bricks, Journal of Engineering Sciences, Assiut University, vol. 40 / issue 1, pp. 21-34 , 2012

  2. . Bui Q.B., Morel J.C., Hans S., Meunier S., Compression behaviour of non- industrial materials in civil engineering by three scale experiments: the case of rammed earth, Materials and Structures, vol. 42 / issue 8, pp. 1101-1116, 2009 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 14th International Multidisciplinary Scientific Conferences SGEM2015

  3. . Buia Q.B., Morel J.C., Venkatarama Reddy c B.V., Ghayad W., Durability of rammed earth walls exposed for 20 years to natural weathering, Building and Environment, vol. 44 / issue 5, pp. 912–919, 2009

  4. Călătan G., Hegyi A., Mircea C., Ecological materials for construction , Conf. Proceedings of the 14th Int. Multidisciplinary Scientific GeoConference & EXPO – SGEM 2014, Albena, Bulgaria, Sec .: 26. Green Buildings Technologies and Materials

  5. Călătan G., Hegyi A., Dico C., Mircea C., Additives Influence on the Earth Characteristics Used in Vernacular Construction, Int. Conf. „Environmental Legislation, Safety Engineering and Disaster Management” ELSEDIMA 10th edition, 2014

  6. Deboucha S., Hashim R, A review on bricks and stabilized compressed earth blocks, Scientific Research and Essays, vol. 6 / issue 3, pp. 499-506, 2011

  7. . Hall M., Djerbib Y., Rammed earth sample production: context, recommendations and consistency, Construction and Building Materials , vol. 18 / issue 4 , pp. 281 – 286, 2004

  8. Heredia Zavoni E. A., Bariola Bernales J. J., Vargas Neumann J., Mehta P. K., Improving the moisure resistance of adobe structures, Materials and Structures, vol. 21, pp. 213-221, 1988

  9. Islam M. S., Iwashita K., Earthquake Resistance of Adobe Reinforced by Low Cost Traditional Materials, Journal of Natural Disaster Science, vol. 32 / issue 1, pp. 1 - 21, 2010

  10. . Kiroff L., Roedel H, Sustainable Construction Technologies: Earth Buildings in New Zealand, Sec. Int. Conf. of Sustenable Constructions Materials and Technologies, Ancona Italia, 2010

  11. Love S., The Geoarchaeology of Mudbricks in Architecture: A Methodological Study from Catalhoyuk, Turkey, Geoarchaeology: An Int. Journal, vol. 27, pp. –156, 2012

  12. . Minke G., Building with earth. Design and Technology of a Sustainable Architecture, Birkhäuser – Publishers for Architecture Basel Berlin Boston, 2005

  13. Okunade E. A., The effect of Wood Ash and Sawdust admixtures on the Engineering Properties of a Burnt Laterite-Clay Brick, Journal of Applied Science, vol. 8 / issue 6, pp. 1042-1048, 2008

  14. Revuelta-Acosta J. D., Garcia-Diaz A., Soto-Zarazua G. M., Rico-Garcia E., Adobe as a Sistainable Material: A thermal performance, Journal of Applied Science, vol. 10 / issue 19, pp. 2211-2216, 2010

  15. . Venkatarama Reddy B.V., Prasanna Kumar P., Cement stabilised rammed earth. Part B: compressive strength and stress –strain characteristics, Science Direct, Materials and Structures, vol. 44, pp. 695 – 707, 2011 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  16. Bahobail M. A., The Mud Additives and Their Effect on Thermal Conductivity of Adobe Bricks, Journal of Engineering Sciences, Assiut University, vol. 40 / issue 1, pp. 21-34 , 2012

  17. . Bui Q.B., Morel J.C., Hans S., Meunier S., Compression behaviour of non- industrial materials in civil engineering by three scale experiments: the case of rammed earth, Materials and Structures, vol. 42 / issue 8, pp. 1101-1116, 2009 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 14th International Multidisciplinary Scientific Conferences SGEM2015

  18. . Buia Q.B., Morel J.C., Venkatarama Reddy c B.V., Ghayad W., Durability of rammed earth walls exposed for 20 years to natural weathering, Building and Environment, vol. 44 / issue 5, pp. 912–919, 2009

  19. Călătan G., Hegyi A., Mircea C., Ecological materials for construction , Conf. Proceedings of the 14th Int. Multidisciplinary Scientific GeoConference & EXPO – SGEM 2014, Albena, Bulgaria, Sec .: 26. Green Buildings Technologies and Materials

  20. Călătan G., Hegyi A., Dico C., Mircea C., Additives Influence on the Earth Characteristics Used in Vernacular Construction, Int. Conf. „Environmental Legislation, Safety Engineering and Disaster Management” ELSEDIMA 10th edition, 2014

  21. Deboucha S., Hashim R, A review on bricks and stabilized compressed earth blocks, Scientific Research and Essays, vol. 6 / issue 3, pp. 499-506, 2011

  22. . Hall M., Djerbib Y., Rammed earth sample production: context, recommendations and consistency, Construction and Building Materials , vol. 18 / issue 4 , pp. 281 – 286, 2004

  23. Heredia Zavoni E. A., Bariola Bernales J. J., Vargas Neumann J., Mehta P. K., Improving the moisure resistance of adobe structures, Materials and Structures, vol. 21, pp. 213-221, 1988

  24. Islam M. S., Iwashita K., Earthquake Resistance of Adobe Reinforced by Low Cost Traditional Materials, Journal of Natural Disaster Science, vol. 32 / issue 1, pp. 1 - 21, 2010

  25. . Kiroff L., Roedel H, Sustainable Construction Technologies: Earth Buildings in New Zealand, Sec. Int. Conf. of Sustenable Constructions Materials and Technologies, Ancona Italia, 2010

  26. Love S., The Geoarchaeology of Mudbricks in Architecture: A Methodological Study from Catalhoyuk, Turkey, Geoarchaeology: An Int. Journal, vol. 27, pp. –156, 2012

  27. . Minke G., Building with earth. Design and Technology of a Sustainable Architecture, Birkhäuser – Publishers for Architecture Basel Berlin Boston, 2005

  28. Okunade E. A., The effect of Wood Ash and Sawdust admixtures on the Engineering Properties of a Burnt Laterite-Clay Brick, Journal of Applied Science, vol. 8 / issue 6, pp. 1042-1048, 2008

  29. Revuelta-Acosta J. D., Garcia-Diaz A., Soto-Zarazua G. M., Rico-Garcia E., Adobe as a Sistainable Material: A thermal performance, Journal of Applied Science, vol. 10 / issue 19, pp. 2211-2216, 2010

  30. . Venkatarama Reddy B.V., Prasanna Kumar P., Cement stabilised rammed earth. Part B: compressive strength and stress –strain characteristics, Science Direct, Materials and Structures, vol. 44, pp. 695 – 707, 2011 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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Number of times cited according to Crossref: 3

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