Scientific Research and Essays

  • Abbreviation: Sci. Res. Essays
  • Language: English
  • ISSN: 1992-2248
  • DOI: 10.5897/SRE
  • Start Year: 2006
  • Published Articles: 2768

Full Length Research Paper

Investigations on optimum possibility of replacing cement partially by redmud in concrete

D. Linora Metilda
  • D. Linora Metilda
  • Anna University, Chennai, Tamilnadu, India
  • Google Scholar
C. Selvamony
  • C. Selvamony
  • Sun College of Engineering and Technology, Erachakulam, Kanyakumari, Tamilnadu, India.
  • Google Scholar
R. Anandakumar
  • R. Anandakumar
  • S. Veerasamy Chatear College of Engineering and Technology, Tamilnadu, India.
  • Google Scholar
A. Seeni
  • A. Seeni
  • S. Veerasamy Chatear College of Engineering and Technology, Tamilnadu, India.
  • Google Scholar


  •  Received: 22 January 2015
  •  Accepted: 11 February 2015
  •  Published: 28 February 2015

References

Sawant AB, Kumtheker MB, Sawant SG (2013). Utilization of Neutralized Red mud in concrete. Int. J. Inventive Eng. Sci. 1(2):9-13.
 
Ashok P, Suresh kumar MP (2014). Experimental studies on concrete utilising Red mud as a partial replacement of cement with Hydrated lime. IOSR J. Mech. Civil Eng. pp. 1-10.
 
Govindarajan D, Jayalakshmi G (2012). Investigation of the influence of calcined Red mud in cement hydration. Int. J. Recent Sci. Res. 3(12):1039-1041.
 
Mohan K, Salim A, Survesh R (2013). Development of self-compacting concrete by Industrial waste Red mud. Int. J. Eng Res. Appl. 3:539-542.
 
Manoj B, Salim A, Geeta B (2014). Development of the bricks from red mud by Industrial waste. Int. J. Emerging Sci. Eng. 2(4):7-12.
 
Rudrasamy MP, Prakash KB (2014). An experimental investigation on the effect of alternate welting and drying on the properties of concrete produced by red mud. Int. J. Adv. Res. 2(1):473-484.
 
Ankit NCP, Jayesh KP (2013). Stone waste: Effective replacement of cement for establishing green concrete. Int. J. Innovat. Technol. Exploring Eng. 2(5):2278-3075.
 
Shetty KK, Gopinath N, Ragul SK (2014). Self compacting concrete using red mud and used foundry sand. Int. J. Res. Eng. Tech. pp. 708-711.
 
Sakthieswaran N, Ganesan K (2013.) A short survey for different waste utilisation in concrete. J. Appl. Sci. Res. 9(10):5548-5552.
 
Deotale RS, Sathawane SH, Narde AR (2012). Effect of partial replacement of cement by flyash, Rice husk ash with using steel fiber in concrete. Int. J. Sci. Eng. Res. 3(6):1-9.
 
Vandhiyan R, Ramkumar K, Harmoniz J (2014). Study on behaviour of Red mud with cement in concrete. J. Harmonized Res. Eng. 2(1):231-234.
 
Ramesh M, Karthic KS, Karthikeyen T, Kumaravel A (2014). Construction materials from Industrial waste - A review of current practices. Int. J. Environ. Res. Dev. 4(4):317-324.
 
Sawant AB, Kumthekar MB, Diwan VV, Hiraskar KG (2012). Experimental study on Partial replacement of cement by neutralized red mud in concrete. Int. J. Eng. Adv. Technol. 2(1):282-286.
 
Shetty KK, Gopinath N, Vipul V (2014). Effect of red mud and iron ore tailings on the strength of self-compacting concrete. Eur. Scientific J. 10(21):168-176.
 
Dayalan J, Beulah M (2014). Effect of waste material in partial replacement of cement, Fine aggregate and coarse aggregate in concrete. Int. J. Inventive Engg and Sciences. 2(4):33-36.
 
Bahoria BV, Parbat DK, Naganaik PB, Waghe UP (2013). Comprehensive literature review on use of waste product in concrete. Int. J. Appl. Innovat. Eng. Manag. 2(4):87-394.
 
Sahu V, Prachi Sohoni, Niragi Dave, Isha Verma (2013). Utilization of industrial by-product as raw material in construction industry – A Review. Int. J. Eng Sci. Tech. 5(2):242-246.
 
Kosior-Kazberuk M (2011). Application of SSA as partial replacement of aggregate in concrete. Pol. J. Environ. Stud. 20(2):365-370.
 
Seeni A, Selvamony C, Kannan SU, Ravikumar MS (2012). Experimental study of partial replacement of fine aggregate with waste material from china clay industries. Int. J. Comp. Eng. Res. (ijceronline.com). 2(8):167-171.
 
Ribeiro DV, Joao AL, Marcio RM (2011). Potential use of natural red mud as Pozzolan for Portland cement. Mat. Res. 14(1):60-66.
Crossref
 
IS: 8112-1989. Indian Standard Specification for 43 Grade OrdinaryPortland Cement.
 
IS: 4031 (Part 1): 1996. Indian Standard Method of Physical Tests for Hydraulic Cement, Determination of Fineness by Dry Sieving.
 
IS: 4031 (Part 11): 1988. Indian Standard Method of Physical Tests for Hydraulic Cement, Determination of Density.
 
IS: 4031 (Part 4): 1988. Indian Standard Method of Physical Tests for Hydraulic Cement, Determination of Consistency of Standard Cement Paste.
 
IS: 4031 (Part 5): 1988. Indian Standard Method of Physical Tests for Hydraulic Cement, Determination of Initial and Final Setting Times.
 
IS: 4031 (Part 3): 1988. Indian Standard Method of Physical Tests for Hydraulic Cement, Determination of Soundness.
 
IS 383 – 1970. Indian Standard Specification for Coarse and Fine Aggregates from Natural Sources for Concrete.
 
IS 10262-2009. Indian Standard Concrete Mix Proportioning – Guidelines.
 
IS 516-1959. Indian Standard Methods of Tests for Strength of Concrete.