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2014 | 15 | 2 |

Tytuł artykułu

Optimization of concrete made with abakaliki quarry dust as fine aggregate using Scheffe’s optimization Model

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In recent years, Nigeria has witness rapid development especially in the area of infrastructural development like roads, bridges, buildings etc. The conventional methods used in concrete mixing have its own peculiar problems, like time wasting, material wasting and errors. These problems have been the cause of structural failures which has given rise to loss of life and properties. Hence the need to development a method that will take care of all these anomalies witness in the conventional method. This work is aim at removing these anomalies by the use of Scheffes optimization method. This optimization method can predict the compressive strength of a concrete given the mix ratios and also predict the mix ratios required to give a compressive strength for a particular concrete made by completely replacing river sand with quarry dust. With this method it will be easy to predict the compressive strength of concrete based on the type of structure it is to be used for, there by eliminating the problems associated with structural collapse due to errors in concrete mixing by conventional method.

Wydawca

-

Rocznik

Tom

15

Numer

2

Opis fizyczny

p.115-128,ref.

Twórcy

autor
  • Civil Engineering Department, Federal Polytechnic Nekede, Owerri, Nigeria
autor
  • Mechanical Engineering Department, Federal Polytechnic Nekede, Owerri, Nigeria
autor
  • Mechanical Engineering Department, Federal Polytechnic Nekede, Owerri, Nigeria
autor
  • Mechanical Engineering Department, Federal Polytechnic Nekede, Owerri, Nigeria
autor
  • Agricultural Engineering Department, Federal Polytechnic Nekede, Owerri, Nigeria

Bibliografia

  • [1] BS 12 (1978). Specification for Portland Cement. London British Standard Institute.
  • [2] BS 812 (1975). Method of Determination of Particle size and Shape. London British Standard Institute.
  • [3] BS 1881 (1983). Method of determination of Compressive Strength of Concrete Cubes. London British Standard Institute.
  • [4] Kalantari B., Mafian S., Huat B. B. K., Contemporary Engineering Science 2(3) (2009) 139-148.
  • [5] Mahzuz H. M. A., Ahmed A. A., Yusuf M. A., African Journal of Environmental Science and Technology 5(5) (2011) 381-388.
  • [6] Rajasekeran S., Indian Journal of Engineering & Material Science 13 (2005) 7-17.
  • [7] Sharmin R., Ahmed M., Mohiuddin A., Forhat A. L., ARPN J. Eng. Appl. Sci. 1(2) (2006) 1-4.
  • [8] Scheffes H., Journal of the Royal Statistical Society. Ser B, 20 (1958) 344-360.
  • [9] Simon M. J. (2003). Concrete Mixture Optimization Using Statistical Methods: Final Report. FHWA, Ofiice of Infrastural Research and Development. 6300 Georgetown Pick McLean, VA 22101.
  • [10] Simon M. J., Lagergren E. S., Snyder K. A. (1997). Concrete Mixture Optimization Using Statistical Mixture Design Method. International Symposium on High Performance Concrete, New Orleans Louisiana.
  • [11] Troxel G. E., Davies H. E., Kelly J .W. (1968). Composition and properties of Concrete. (pp528.). 2nd edition McGraw Hill Books Company New York.
  • [12] Waziri B. S., Bukar A. G., Gaji Y. Z. A., Continental J. Engineering Science 6(2) (2011) 1-6.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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