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HIGH STRENGTHS MORTARS REALIZED THROUGH SILICA FUME RECYCLING

Lect. Dr. Catalin Badea 1 . Student Remus Chendes1 Lect. Dr. Liana Iures 1 Lect. Dr. Sorin Dan1

First published: 2015https://doi.org/10.5593/sgem2015/b41/s18.089View metrics

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Title
HIGH STRENGTHS MORTARS REALIZED THROUGH SILICA FUME RECYCLING
Authors
Lect. Dr. Catalin Badea 1 . Student Remus Chendes1 Lect. Dr. Liana Iures 1 Lect. Dr. Sorin Dan1
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2015
Pages
683-690
ISSN
1314-2704
ISBN
978-619-7105-38-4
Language
en
Publication type
Conference Paper
References14
  1. Mehta PK. Condensed silica fume. In: Swamy RN, editor. Cement replacement materials. London: Surrey University Press; 1986. p. 134–70.

  2. Somayaji S. Civil engineering materials. New Jersey: Prentice Hall; 1995.

  3. Wongkeo W, Chaipanich A. Compressive strength, microstructure and thermal analysis of autoclaved and air cured structural lightweight concrete made with coal bottom ash and silica fume. Mater Sci Eng A 2010;527:3676–84.

  4. Barati M, Sarder S, McLean A, Roy R. Recovery of silicon from silica fume. J Non- Crist Solids 2011;357:18–23.

  5. Neluta Barbuti, Miriam Barbatei, Catalin Badea, Special mortar: repair mortars, Student thesis dissertation, Politehnica University of Timisoara, Civil Engineering Faculty, 2014

  6. G.APPA RAO, Development of strength with age of mortars containing silica fume, Cement and Concrete Research , Volume 31, Issue 8 , August 2001, Pages 1141- 6.

  7. M. Najimi, J. Sobhani, B. Ahmadi, M. Shekarchi, An experimental study on durability properties of concrete containing zeolite as a highly reactive natural pozzolan, Constr. Build. Mater. 35 (2012) 1023–1033. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  8. Mehta PK. Condensed silica fume. In: Swamy RN, editor. Cement replacement materials. London: Surrey University Press; 1986. p. 134–70.

  9. Somayaji S. Civil engineering materials. New Jersey: Prentice Hall; 1995.

  10. Wongkeo W, Chaipanich A. Compressive strength, microstructure and thermal analysis of autoclaved and air cured structural lightweight concrete made with coal bottom ash and silica fume. Mater Sci Eng A 2010;527:3676–84.

  11. Barati M, Sarder S, McLean A, Roy R. Recovery of silicon from silica fume. J Non- Crist Solids 2011;357:18–23.

  12. Neluta Barbuti, Miriam Barbatei, Catalin Badea, Special mortar: repair mortars, Student thesis dissertation, Politehnica University of Timisoara, Civil Engineering Faculty, 2014

  13. G.APPA RAO, Development of strength with age of mortars containing silica fume, Cement and Concrete Research , Volume 31, Issue 8 , August 2001, Pages 1141- 6.

  14. M. Najimi, J. Sobhani, B. Ahmadi, M. Shekarchi, An experimental study on durability properties of concrete containing zeolite as a highly reactive natural pozzolan, Constr. Build. Mater. 35 (2012) 1023–1033. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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