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Anderberg, Y., Forsen, N.E. and Aasen, B., 1986. Measured And Predicted Behaviour Of Steel Beams And Columns In Fire. Fire Safety Science 1: 259-269. doi:10.3801/IAFSS.FSS.1-259
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Rudolph, K., Richter, E., Hass, R. and Quast, U., 1986. Principles For Calculation Of Load-bearing And Deformation Behaviour Of Composite Structural Elements Under Fire Action. Fire Safety Science 1: 301-310. doi:10.3801/IAFSS.FSS.1-301
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Keough, J.J., 1986. Translation Of Research Into Practice. Fire Safety Science 1: 593-601. doi:10.3801/IAFSS.FSS.1-593
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Keski-Rahkonen, O., 1989. Temperature Calculation Of Bare And Insulated Steel Structures Exposed To Standard Iso 834 Fire Test. Fire Safety Science 2: 697-705. doi:10.3801/IAFSS.FSS.2-697
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Franssen, J.M., Schleich, J.B., Cajot, L.G., Talamona, D., Zhao, B., Twilt, L. and Both, K., 1994. A Comparison Between Five Structural Fire Codes Applied To Steel Elements. Fire Safety Science 4: 1125-1136. doi:10.3801/IAFSS.FSS.4-1125
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Nishigaki, T., Mizuno, K., Hazama, S., Ikeda, Y., Masuda, K. and Kanda, S., 1994. Heat Bridge Effect Of Composite Sandwich Walls Of Steel Plates And Concrete. Fire Safety Science 4: 1171-1182. doi:10.3801/IAFSS.FSS.4-1171
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Thomas, G.C., Buchanan, A.H. and Fleischmann, C.M., 1997. Structural Fire Design: The Role Of Time Equivalence. Fire Safety Science 5: 607-618. doi:10.3801/IAFSS.FSS.5-607
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Ali, F.A., Sirnms, I.W. and O'connor, D.J., 1997. Behaviour Of Axially Restrained Steel Columns During Fire. Fire Safety Science 5: 1105-1116. doi:10.3801/IAFSS.FSS.5-1105
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Wang, Y.C., 1997. Tensile Membrane Action And The Fire Resistance Of Steel Framed Buildings. Fire Safety Science 5: 1117-1128. doi:10.3801/IAFSS.FSS.5-1117
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Kirby, B.R., 1997. Large Scale Fire Tests: The British Steel European Collaborative Research Programme On The Bre 8-storey Frame. Fire Safety Science 5: 1129-1140. doi:10.3801/IAFSS.FSS.5-1129
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Chandrasekaran, V. and Mulcahy, N.L., 1997. Analysis Of Time Of Collapse Of Steel Columns Exposed To Fire. Fire Safety Science 5: 1141-1152. doi:10.3801/IAFSS.FSS.5-1141
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Kumar, S. and Chitty, R., 2000. CFD Study Of Thermal Detection In A Closed Compartment Subject To External Fires. Fire Safety Science 6: 767-778. doi:10.3801/IAFSS.FSS.6-767
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Harada, M., 2000. Practical Estimation Of Deflection And Ultimate Strength Of Fire Exposed Composite Slab. Fire Safety Science 6: 843-854. doi:10.3801/IAFSS.FSS.6-843
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Ishihara, T., Wakamatsu, Takao, Harada, K. and Yusa, S., 2000. An Extrapolation Method Of The Steel Temperature Rise For Engineering Fire Resistance Design. Fire Safety Science 6: 867-878. doi:10.3801/IAFSS.FSS.6-867
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Knobloch, M. and Fontana, M., 2005. Load-carrying Behavior Of Unstiffened Elements At Elevated Temperatures In Fire. Fire Safety Science 8: 223-234. doi:10.3801/IAFSS.FSS.8-223
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Elliott A., Temple A., Maluk C. and Bisby, L., 2014. Novel Testing to Study the Performance of Intumescent Coatings under Non-Standard Heating Regimes. Fire Safety Science 11: 652-665. 10.3801/IAFSS.FSS.11-652
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Hirashima, T., Okuwaki K., Zhao, Xuansu, Sagami Y. and Toyoda K., 2014. An Experimental Investigation of Structural Fire Behaviour of a Rigid Steel Frame. Fire Safety Science 11: 677-690. 10.3801/IAFSS.FSS.11-677
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