Journal of Engineering and Applied Sciences

Year: 2017
Volume: 12
Issue: 2 SI
Page No. 6269 - 6270

Replacement of Fine Aggregate Spent Fire Bricks Partially in Concrete

Authors : K.Thiruvenkatesamy

References

Kesegic, I., I. Netinger and D. Bjegovic, 2008. Recycled clay brick as an aggregate for concrete: Overview. Tech. Gazette, 15: 35-40.
Direct Link  |  

Khalaf, F.M. and A.S. DeVenny, 2004. Performance of brick aggregate concrete at high temperatures. J. Mater. Civil Eng., 16: 556-565.
Direct Link  |  

Raut, S., S. Mandavgane and R. Ralegaonkar, 2013. Thermal performance assessment of recycled paper mill Waste-cement bricks using the Small-scale model technique. J. Energy Eng., Vol. 140. 10.1061/(ASCE)EY.1943-7897.0000171

Raval, A.D., D.I.N. Patel and J. Pitroda, 2013. Ceramic waste: Effective replacement of cement for establishing sustainable concrete. Intl. J. Eng. Trends Technol., 4: 2324-2329.

Selvakumar, V. and N. Manoharan, 2014. Thermal properties of polypropylene-montmorillonite nanocomposites. Indian J. Sci. Technol., 7: 136-139.
Direct Link  |  

Sohaib, M.M., S.A. Ahmed and M.M. Balaha, 2001. Effect of fire and cooling mode on the properties of slag mortars. Cem. Concr. Res., 31: 1533-1538.
CrossRef  |  

Sugan, S., K. Baskar and R. Dhanasekaran, 2015. Structural, optical and thermal properties of CuGaS 2 crystals by Chemical Vapor Transport (CVT) method. Optik-Intl. J. Light Electron Opt., 126: 4326-4329.
Direct Link  |  

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