Abstract
Purpose
Concrete is a widely used construction material which can be prepared using locally available resources (aggregates, cement and water) by following relevant standard guidelines. The residual properties of concrete determined by heating in an electric furnace may not produce a similar effect of fire. The purpose of this paper is to compare the effect of a fire with that coming from the exposure of normal strength concrete to predetermined reference temperatures, for which two sets of specimens were heated in a fire furnace provided with gas burners and an electric furnace.
Design/methodology/approach
The concrete cubes and cylinders were subjected to 200oC, 400oC, 600oC and 800oC temperature in a gas-controlled fire furnace and an electric furnace for 2 h. The physical properties and mechanical properties of concrete were determined after cooling the specimens in air. The quality of concrete specimens was determined using the ultrasonic pulse velocity test, and surface hardness of the heat-exposed cubes was recorded using the Schmidt rebound hammer.
Findings
The fire-exposed specimens were found to have lower residual compressive strength, tensile strength and higher porosity/voids/internal cracks than the specimens heated in an electric furnace at the same temperature. Further, a good agreement with compressive strength and rebound numbers was observed for each of the two heating systems (flames coming from gas burners and electric furnace).
Originality/value
Normal strength concrete specimens exposed to heat in an electric furnace will not give the same effect of fire having the same maximum temperature. Further, it is noticed that concrete subjected to elevated temperature is sensitive to heating modalities, be it the flames of a gas furnace or the radiation of an electric furnace.
Subject
Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality
Reference35 articles.
1. Dehydration and rehydration processes of cement paste exposed to high temperature environments;Journal of Materials Science,2004
2. Stress and deformation characteristics of concrete at high temperatures. 2. Experimental investigation and material behaviour model;Bulletin of Division of Structural Mechanics and Concrete Construction, Bulletin,1976
3. NDT methods for the assessment of concrete structures after fire exposure,2013
4. Retained properties of concrete exposed to high temperatures: size effect;Fire and Materials,2009
5. Forensic investigation of fire-affected reinforced concrete buildings;IOSR Journal of Mechanical and Civil Engineering,2014
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