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Comparison of the strength development of binary and ternary cements containing perlite powder Cover

Comparison of the strength development of binary and ternary cements containing perlite powder

Open Access
|Nov 2020

References

  1. [1] STN EN 197-1. (2012). Cement. Part 1 Composition, specifications and conformity criteria for common cements.
  2. [2] Sivakumar A., Nair Nithya, Sounthararajan V.M. (2013). Hydration Characteristics of Pozzolanic Substitutes in Cementitious Binder. World Applied Sciences Journal 25.8, 1166-1170. ISSN 1818-4952.
  3. [3] DEVI K. Syamala, LAKSHMI V. Vijaya, ALAKANANDANA A. (2017). Impacts of cement industry on environment-an overview. Asia Pac. J. Res. 1, 156-161.
  4. [4] NACERI A., HAMINA M. Chikouche, GROSSEAU P. (2009). Physico-Chemical Characteristics of Cement Manufactured with Artificial Pozzolan (Waste Brick). World Academy of Science, Engineering and Technology. 52, 41-43.
  5. [5] ZHAO Feng-Qing, et al. (2007). Activated fly ash/slag blended cement. Resources, Conservation and recycling. 52 (2), 303-313.
  6. [6] TOKYAY Mustafa. (2016). Cement and concrete mineral admixtures. CRC Press.
  7. [7] PAYA J., et al. (2000). Mechanical treatment of fly ashes: Part IV. Strength development of ground fly ash-cement mortars cured at different temperatures. Cement and Concrete Research. 30 (4), 543-551.
  8. [8] CHOI Young Cheol, KIM Jiyoung, CHOI Seongcheol. (2017). Mercury intrusion porosimetry characterization of micropore structures of high-strength cement pastes incorporating high volume ground granulated blast-furnace slag. Construction and Building Materials. 137, 96-103.
  9. [9] SURESH D., NAGARAJU K. (2015). Ground granulated blast slag (GGBS) in concrete–a review. IOSR journal of mechanical and civil engineering. 12(4), 76-82.
  10. [10] PANDEY Rajesh Kr, KUMAR Abhishek, AFAQUE KHAN M. (2016). Effect of ground granulated blast furnace slag as partial cement replacement on strength and durability of concrete: a review. Int Res J Eng Technol (IRJET). 3 (2), 1662-1666.
  11. [11] KAGADGAR Sarfaraz Ahmed, SAHA Suman, RAJASEKARAN C. (2017). Mechanical and durability properties of fly ash based concrete exposed to marine environment. Selected Scientific Papers-Journal of Civil Engineering. 12 (1), 7-18.
  12. [12] ERDOĞAN Sinan Turhan, SAĞLIK Aslı Ünsal. (2013). Early-age activation of cement pastes and mortars containing ground perlite as a pozzolan. Cement and Concrete Composites. 38, 29-39.10.1016/j.cemconcomp.2013.03.004
  13. [13] BHEEL Naraindas, et al. (2019). Use of rice husk ash as cementitious material in concrete. Engineering, Technology & Applied Science Research. 9 (3), 4209-4212.
  14. [14] BHEEL Naraindas. et al. (2019). Effect of Tile Powder Used as a Cementitious Material on the Mechanical Properties of Concrete. Engineering, Technology & Applied Science Research. 9.5, 4596-4599.
  15. [15] ESFANDIARI J., LOGHMANI P. (2019). Effect of perlite powder and silica fume on the compressive strength and microstructural characterization of self-compacting concrete with lime-cement binder. Measurement. 147, 106846.10.1016/j.measurement.2019.07.074
  16. [16] KAREIN S., Mahmoud Motahari, et al. (2018). Effects of the mechanical milling method on transport properties of self-compacting concrete containing perlite powder as a supplementary cementitious material. Construction and Building Materials. 172, 677-684.10.1016/j.conbuildmat.2018.03.205
  17. [17] FEDERICO L. M., CHIDIAC S. E. (2009). Waste glass as a supplementary cementitious material in concrete–critical review of treatment methods. Cement and concrete composites. 31 (8), 606-610.10.1016/j.cemconcomp.2009.02.001
  18. [18] SOBOL Khrystyna, MARKIV Taras, HUNYAK Oleksii. (2017). Effect of mineral additives on structure and properties of concrete for pavements. Selected Scientific Papers-Journal of Civil Engineering. 12 (2), 95-100.
  19. [19] SAMAR Mueena, SAXENA Shweta. (2016). Study of chemical and physical properties of perlite and its application in India. Int J Sci Technol Manag. 5, 70-80.
  20. [20] GUENANOU Farida, KHELAFI Hamid, AATTACHE Amel. (2019). Behavior of perlite-based mortars on physicochemical characteristics, mechanical and carbonation: Case of perlite of Hammam Boughrara. Journal of Building Engineering. 24, 100734.10.1016/j.jobe.2019.100734
  21. [21] KAREIN S. Mahmoud Motahari, et al. (2018). Effects of the mechanical milling method on transport properties of self-compacting concrete containing perlite powder as a supplementary cementitious material. Construction and Building Materials. 172, 677-684.
  22. [22] STN EN 196-1. (2019). Methods of testing cement. Part 1 Determination of strength.
DOI: https://doi.org/10.1515/sspjce-2020-0006 | Journal eISSN: 1338-7278 | Journal ISSN: 1336-9024
Language: English
Page range: 47 - 57
Published on: Nov 24, 2020
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2020 Alena Sičáková, Erika Figmigová, Matej Špak, published by Technical University of Košice
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.