참고문헌
- ACI 318M-11 (2011), Building Code Requirements for Reinforced Concrete, American Concrete Institute, Detroit, Michigan.
- Anderberg, Y. and Thelandersson, S. (1976), "Stress and deformation characteristics of concrete at high temperature, experimental investigation and material and material behavior model", Bulletin 54Lund Institute of Technology, Lund, Sweden
- Annerel, E. and Taerwe, L. (2009), "Approaches for the assessment of the residual strength of concrete exposed to fire", Concrete Repair, Rehabilitation and Retrofitting II, 615-621
- Applied Technology Council (2005), "Improvement of nonlinear static seismic analysis procedures", Report No FEMA-440, Washington DC
- Belkacem, T., Hocine, C., Hacene, H. and Resheidat, M. (2008), "Effects of cooling condition on residuals properties of high-performance concrete at high temperature", International Conference on Construction and Building Technology, 135-142
- Chen, B., Li, C.L. and Chen, L.Z. (2009), "Experimental study of mechanical properties of normal strength concrete exposed to high temperatures at early age", Fire Saf. J., 44, 997-1002 https://doi.org/10.1016/j.firesaf.2009.06.007
- CEB-FIP Bulletin 46 (2008), Fire design of concrete structures-structural behaviour and assessment, Federation Internationale du beton (fib).
- Chang, Y.F., Chen, Y.H., Sheu, M.S. and Yao, G.C. (2006), "Residual stress- strain relationship for concrete after exposure to high temperatures", Cement Concrete Res., 36, 1999-2005 https://doi.org/10.1016/j.cemconres.2006.05.029
- El-Hawary, M.M., Ragab, A.M., El-Azim, A.A. and Elibiarif, S. (1996), "Effect of fire on flexural behaviour of RC beams", Construct. Build. Mater., 10(2), 147-150 https://doi.org/10.1016/0950-0618(95)00041-0
- Eurocode 2 (2004), Design of concrete structures. Part 1.2: General rules- structural fire design (EN1992-1-2:2004), Commission of European Communities, Brussels
- Freskakis, G.N. (1984), "Behaviour of reinforced concrete at elevated temperatures", Proceedings ASCE Conference on Structural Engineering in Nuclea Facilities, Raleigh, North Caroline
- Freskakis, G.N., Burrow, R.C. and Debbas, E.B. (1979), "Strength properties of concrete at elevated temperatures", ASCE National Convention, Boston, Massachusetts
- Ghandehari, M., Behnood, A. and Khanzadi, M. (2010), "Residual mechanical properties of high strength concrete after exposure to elevated temperatures", J. Mater. Civil Eng., 22(1), 59-64 https://doi.org/10.1061/(ASCE)0899-1561(2010)22:1(59)
- Harmathy, T.Z. and Berndt, J.E. (1966), "Hydrated Portland cement and light weight concrete at elevated temperatures", J. Am. Concrete Ins., 63(1), 93-112
- Hertz, K.D. (2005), "Concrete strength for fire safety design", Mag. Concrete Res., 57(8), 445-453 https://doi.org/10.1680/macr.2005.57.8.445
- Hsu, J.H. and Lin, C.S. (2006), "Residual bearing capabilities of fire-exposed reinforced concrete beams", Int. J. Appl. Acien. Eng., 4(2), 151-163
- IS: 1786 (1985), Specification for high strength deformed steel bars and wires for concrete reinforcement, Bureau of Indian Standards, New Delhi
- ISO 834-1 (1999), Fire resistance tests-elements of building construction
- Jayasree, G., Lakshmipathy, M. and Santhanaselvi, S. (2011), "Behaviour of RC beams under elevated temperature", J. Struct. Fire Eng., 2(1), 45-55 https://doi.org/10.1260/2040-2317.2.1.45
- Kent, D.C. and Park, R. (1971), "Flexural members with confined concrete", J. Eng., 97(ST7), 1969-1990
- Knaack, A.M., Kurama, Y.C. and Kirkner, D.J. (2010), "Compressive strength relationships for concrete under elevated temperatures", ACI Mater. J, 107(2), 164-175
- Kodur, V.K.R., Dwaikat, M.B. and Fike, R.S. (2010), "An approach for evaluating the residual strength of fire exposed RC beams", Mag. Concrete Res., 62(7), 479-488 https://doi.org/10.1680/macr.2010.62.7.479
- Kodur ,V.K.R., Dwaikat, M.M.S. and Dwaikat, M.B. (2008), "High-temperature properties of concrete for fire resistance modelling of structures", ACI Materi. J., 105(5), 517-527
- Kumar, A. and Kumar, V. (2003), "Behaviour of RCC beams after exposure to elevated temperatures", J. Ins. Eng., Civil Eng. Div., 84(4), 165-170
- Lee, J.S., Xi, Y.P. and William, K. (2008), "Properties of concrete after high temperature heating and cooling", ACI Mater. J., 105(4), 334-341
- Lienhard, J.H., Lienhard, J. (2008), A Heat Transfer Textbook, 3rd Edition, Cambridge, Massachusetts, Phlogiston Press
- Malhotra, H.L. (1982), "Properties of materials at high temperatures", Report on the Technical Committee 44-PHT, 161-170
- Neves, I.C., Rodrigues, J.C. and Loureiro, A.P. (1996), "Mechanical properties of reinforcing and prestressing steels after heating", J. Mater. Civil Eng., 8(4), 189-194 https://doi.org/10.1061/(ASCE)0899-1561(1996)8:4(189)
- Ozbolt, J. Bosnjak, J., Periskic, G. and Sharma, A. (2013), "3D numerical analysis of reinforced concrete beams exposed to elevated temperatures", Eng. Struct., 58, 166-174.
- Park, R. and Paulay, T. (1975), Reinforced Concrete Structures, John Wiley & Sons, New York
- Poon, C.S., Azhar, S., Anson, M. and Wong, Y.L. (2001), "Comparison of the strength and durability performance of normal- and high-strength pozzolanic concretes at elevated temperatures", Cement Concrete Res., 31, 1291-1300 https://doi.org/10.1016/S0008-8846(01)00580-4
- Schneider, U. (1988), "Concrete at high temperatures- a general review", Fire Saf. J., 13, 55-68 https://doi.org/10.1016/0379-7112(88)90033-1
- Sharma, A., Reddy, G.R., Elighausen, R. and Vaze, K.K. (2011), "Experimental and analytical investigation on seismic behaviour of RC framed structure", Struct. Eng. Mech., 39(1), 125-145 https://doi.org/10.12989/sem.2011.39.1.125
- Takeuchi, M., Hiranoto, M., Kumagai, N., Yamazaki, N., Kodaira, A. and Sugiyama, K. (1993), "Material properties of concrete and steel rebars at elevated temperatures", Proceedings of the 12th International Conference on Structural Mechanics in Reactor Technology, Paper No. H04/4m, Elsevier Science Publication, 133-138
- Terro, M.J. and Hamoush, S.A. (1997), "Effect of confinement on siliceous aggregate concrete subjected to elevated temperatures and cyclic heating", ACI Mater. J., 94(2), 83-89
- Youssef, M.A. and Moftah, M. (2007), "General stress strain relationship for concrete at elevated temperatures", Eng. Struct., 29, 2618-2634 https://doi.org/10.1016/j.engstruct.2007.01.002
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- Evaluating fire resistance of prestressed concrete bridge girders vol.62, pp.6, 2014, https://doi.org/10.12989/sem.2017.62.6.663
- Postfire Damage Assessment of a RC Factory Building vol.33, pp.5, 2019, https://doi.org/10.1061/(asce)cf.1943-5509.0001319
- Impact Analysis of Thermally Pre-Damaged Reinforced Concrete Frames vol.13, pp.23, 2020, https://doi.org/10.3390/ma13235349
- Estimating Postfire Residual Capacity of Heavily Damaged Concrete Members vol.35, pp.2, 2014, https://doi.org/10.1061/(asce)cf.1943-5509.0001561