Effect of Elevated Temperature on the Residual Properties of Quartzite, Granite and Basalt Aggregate Concrete
Tóm tắt
Từ khóa
Tài liệu tham khảo
L.T. Phan, N.J. Carino, Effects of test conditions and mixture proportions on behavior of high-strength concrete exposed to high temperatures. ACI Mater. J. 99, 54–56 (2002)
N.G. Zoldners, V.M. Malhotra, H.C. Wilson, Effect of high temperatures on concretes incorporating different aggregates. Proc. ASTM 60, 1087–1108 (1960)
M. Yoon, G. Kim, G.C. Choe, Y. Lee, Effect of coarse aggregate type and loading level on the high temperature properties of concrete. Const. Build. Mater. 78, 26–33 (2015)
I. Hager, Behaviour of cement concrete at high temperature. Bullet. Polish Acad. Sci. Tech. Sci. 61, 1–10 (2013)
I. Hager, T. Tracz, J. Śliwiński, K. Krzemień, The influence of aggregate type on the physical and mechanical properties of high-performance concrete subjected to high temperature. Fire Mater. 40, 668–682 (2015)
A. Savva, P. Manita, K.K. Sideris, Influence of elevated temperatures on the mechanical properties of blended cement concretes prepared with limestone and siliceous aggregates. Cem. Concr. Compos. 27, 239–248 (2005)
M. Colombo, R. Felicetti, New NDT techniques for the assessment of fire-damaged concrete structures. Fire Safe. J. 42, 461–472 (2007)
I. Netinger, I. Kesegic, I. Guljas, The effect of high temperatures on the mechanical properties of concrete made with different types of aggregates. Fire Safe. J. 46, 425–430 (2011)
S. Hachemi, A. Ounis, Performance of concrete containing crushed brick aggregate exposed to different fire temperatures. Eur. J. Environ. Civ. Eng. 19, 805–824 (2015)
K.S. Al-Jabri, M.B. Waris, A.H. Al-Saidy, Effect of aggregate and water to cement ratio on concrete properties at elevated temperature. Fire Mater. 40, 913–925 (2015)
M. Tufail, K. Shahzada, B. Gencturk, J. Wei, Effect of elevated temperature on mechanical properties of limestone, quartzite and granite Concrete. Int. J. Concr. Struct. Mater. 11, 17–28 (2016)
Z. Xing, A.L. Beaucour, R. Hebert, A. Noumowe, B. Ledesert, Influence of the nature of aggregates on the behaviour of concrete subjected to elevated temperature. Cem. Concr. Res. 41, 392–402 (2011)
J.C. Mindeguia, P. Pimienta, H. Carréc, C. La Borderie, On the influence of aggregate nature on concrete behaviour at high temperature. Eur. J. Environ. Civ. Eng. 16, 236–253 (2012)
J.C. Mindeguia, P. Pimienta, H. Carréc, C. La Borderie, Experimental analysis of concrete spalling due to fire exposure. Eur. J. Environ. Civ. Eng. 17, 453–466 (2013)
IS 4031 (Part 1 to 15), Methods of Physical Tests for Hydraulic Cement, (Bureau of Indian Standards, New Delhi, India, 1999)
IS 383, Specification for coarse and fine aggregate from natural sources for concrete (second revision), (Bureau of Indian Standards, New Delhi, India, 2002)
IS 10262, Recommended guidelines for concrete mix design, (Bureau of Indian Standards, New Delhi, India, 2009)
M.S. Khan, J. Prasad, H. Abbas, Shear strength of RC beams subjected to cyclic thermal loading. Const. Build. Mater. 24, 1869–1877 (2010)
IS 13311 (Part-1), Non-destructive testing of concrete—methods of tests, (Bureau of Indian Standards, New Delhi, India, 1992)
IS 516, Methods of tests for strength of concrete, (Bureau of Indian Standards, New Delhi, India, 2004)
O. Arioz, Effects of elevated temperature on properties of concrete. Fire Safe. J. 42, 516–522 (2007)
N.R. Short, J.A. Purkiss, S.E. Guise, Assessment of fire damaged concrete using colour image analysis. Const. Build. Mater. 15, 9–15 (2001)
P.K. Mehta, M.J.P. Monteiro, Concrete: Microstructure, Properties and Materials (Tata McGraw-Hill Publication, New York, 2012)