Please use this identifier to cite or link to this item: http://ir.futminna.edu.ng:8080/jspui/handle/123456789/28949
Title: Effect of Iron ore Tailings on the Drying Shrinkage of Concrete
Authors: Saleh, Abdlatif
Mohdsam, Abdrahman
Zakaria, Rozana
Mustaffa, Mushairy
Oritola, Sikiru
Keywords: Drying shrinkage
Hardened concrete
Iron ore tailings
concrete strengths
Elastic modulus
Issue Date: 16-Sep-2016
Publisher: Civil Engineering Post Graduate Conference / Symposium on Expertise of Engineering Design SEPKA-ISEED
Citation: A. L. Saleh, A. R. Mohd Sam, R. Zakaria, M. Mustaffar & S. F. Oritola (2016). Effect of Iron ore Tailings on the Drying Shrinkage of Concrete. The 11th International Civil Engineering Post Graduate Conference – The 1st International Symposium on Expertise of Engineering Design SEPKA-ISEED 2016, UTM, Johor. pp. 20-34.
Series/Report no.: 11/1;20-34
Abstract: Abstract: The current pace of study about utilization of industrial waste material in making of concrete and its various applications in concrete production calls for a major paradigm towards achieving sustainability of the industry. Aggregate content in concrete is the most important factor affecting drying shrinkage. Previous researches have placed much attention on coarse aggregate content as it affects drying shrinkage while very few have reported about the influence of fine aggregate content in relation to the drying shrinkage. This study reports the effects of Iron ore tailings (a waste product generated from the production process of iron ore) on the drying shrinkage of concrete. Natural sand was partially replaced with Iron ore tailings to produce normal strength concrete. The properties of fine and coarse aggregate materials, the mechanical properties of concrete and the drying shrinkage were studied. The outcomes of research indicates that the inclusion of Iron ore tailings as fine aggregate in concrete slightly reduced the drying shrinkage of concrete.
Description: Conference paper
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/28949
Appears in Collections:Civil Engineering

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