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Abstract

The evolution of chemical admixtures for Portland cement concrete has seen significant success in recent decades. The majority of efforts have focused on enhancing the qualities of concrete with minimum expenditures via ready-mix providers & contractors in the form of specialized equipment, unique skills, & labor force education. This technique has resulted in building cost savings & widely acknowledged ready-made solutions for unanticipated construction challenges. The behavior of concrete that has been enhanced using superplasticizer additions is being investigated

Keywords

Admixtures Chemical Admixtures Mineral Admixtures

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How to Cite
Reem Hatem Ahmed, & Aiham Nafea Yaseen Alkubaisi. (2021). Observation The Impacts of Various Type of Additive Materials on Concrete (A review). Texas Journal of Multidisciplinary Studies, 2, 235–244. Retrieved from https://zienjournals.com/index.php/tjm/article/view/304

References

  1. Guide to Durable Concrete ACI 201.2R
  2. Chemical Admixtures for Concrete ACI 212.3R
  3. Buiding Code Requirements for
  4. Structural Concrete ACI 318/318M
  5. Superplasticizers in Ready Mixed Concrete NRMCA No
  6. Concrete in practice NRMCA
  7. Admixtures in Concrete - Professor Kamran M. Nemati Winter Quarter 2015
  8. AASHTO, “Portland Cement Concrete Resistant to Excessive Expansion Caused via Alkali-Silica Reaction,” Section 56X, Guide Specification For Highway Construction, http://leadstates.tamu.edu/ASR/library/gspec.stm, American Association of State Highway & Transportation Officials, Washington, D.C., 2001.
  9. Abrams, Duff A., Calcium Chloride as an Admixture in Concrete, Bulletin 13 (PCA LS013), Structural Materials Research Laboratory, Lewis Institute, Chicago, http:// www.portcement.org/pdf_files/LS013.pdf, 1924.
  10. ACI Committee 212, Chemical Admixtures for Concrete, ACI 212.3R-91, American Concrete Institute, Farmington Hills, Michigan, 1991.
  11. ACI Committee 212, Guide for the Use of High-Range Water- Decreasing Admixtures (Superplasticizers) in Concrete, ACI 212.4R-93 (Reapproved 1998), American Concrete Institute, Farmington Hills, Michigan, 1998.
  12. ACI Committee 222, Corrosion of Metals in Concrete, ACI 222R-96, American Concrete Institute, Farmington Hills, Michigan, 1996.
  13. ACI E4, Chemical & Air-Entraining Admixtures for Concrete, ACI Education Bulletin No. E4-96, American Concrete Institute, Farmington Hills, Michigan, 1999, 16 pages.
  14. Aldred, James M., “HPI Concrete,” Concrete International, American Concrete Institute, Farmington Hills, Michigan, November 1988.
  15. Berke, N. S., & Weil, T. G., “World Wide Review of Corrosion Inhibitors in Concrete,” Advances in Concrete Technology, CANMET, Ottawa, 1994, pages 891 to 914.
  16. Chou, Gee Kin, “Cathodic Protection: An Emerging Solution to the Rebar Corrosion Problem,” Concrete Construction, Addison, Illinois, June 1984.
  17. Gajda, John, Development of a Cement to Inhibit Alkali-Silica Reactivity, Research & Development Bulletin RD115, Portland Cement Association, 1996, 58 pages.
  18. Gaynor, Richard D., “Calculating Chloride Percentages,” Concrete Technology Today, PL983, Portland Cement Association, http://www.portcement.org/pdf_files/PL983.pdf, 1998, pages 4 to 5.
  19. Gebler, S. H., The Effects of High-Range Water Reducerss on the Properties of Freshly Mixed & Hardened Flowing Concrete, Research & Development Bulletin RD081, Portland Cement Association, http://www.portcement.org/pdf_ files/RD081.pdf,
  20. “Properties of Concrete”, A.M. Neville, Fourth Edition, Pearson Education Asia pvt., Ltd., 2000.
  21. “Concrete- Microstructure, Properties & Materials”, P.K. Mehta & Palulo J.M. Monteiro, Tata Mcgraw Hill., 2006.
  22. “Concrete Technolgy – Theory & Practice”, M.S. Shetty, S. Chand & Company Ltd.,, 2005.
  23. Current Literature..,
  24. Nawy E.G., Concrete Construction Engineering Handbook. CRC Press, New York, 2008.
  25. Chemical Admixtures for Concrete, ACI 212.3R-04. American Concrete Institute, Farmington Hills, MI.