Effect of high temperature or fire on heavy weight concrete properties |
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Authors: | K. Sakr E. EL-Hakim |
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Affiliation: | a Atomic Energy Authority, Hot Laboratory Center, Radiation Protection Department, P.O. Box 135759, Kalubiuah, Cairo-A.R.E., Egypt b Metallurgy Department-Nuclear Research Center, Atomic Energy Authority, Cairo, Egypt |
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Abstract: | Temperature plays an important role in the use of concrete for shielding nuclear reactors. In the present work, the effect of different durations (1, 2 and 3 h) of high temperatures (250, 500, 750 and 950 °C) on the physical, mechanical and radiation properties of heavy concrete was studied. The effect of fire fitting systems on concrete properties was investigated. Results showed that ilmenite concrete had the highest density, modulus of elasticity and lowest absorption percent, and it had also higher values of compressive, tensile, bending and bonding strengths than gravel or baryte concrete. Ilmenite concrete showed the highest attenuation of transmitted gamma rays. Firing (heating) exposure time was inversely proportional to mechanical properties of all types of concrete. Ilmenite concrete was more resistant to elevated temperature. Foam or air proved to be better than water as a cooling system in concrete structure exposed to high temperature because water leads to a big damage in concrete properties. |
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Keywords: | Temperature Mechanical properties Physical properties Aggregate Concrete |
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