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On the Redistribution of Bending Moments in Two-Span RC Beams and Slabs Exposed to Fire

On the Redistribution of Bending Moments in Two-Span RC Beams and Slabs Exposed to Fire
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摘要 This paper shows consideration of decrease in cross-section stiffness in commonly used in practice RC (reinforced concrete) beams and slabs in cases when only reinforcing bars or only concrete compressed zone, which is subjected to fire. Analyses were based on: (1) standard fire curve [EN 1991-1-2]; (2) 500℃isotherm method assumptions [EN 1992-1-2]; (3) mechanical properties of reinforcing steel heated up to high temperature. Afterwards, based on estimated decrease of cross-sections stiffness, the redistribution of bending moments was calculated in some cases of two-span RC beams and slabs subjected to fire from their bottom face. Due to the bending moment redistribution, one could expect a reduction of bending moments in span cross-sections and an increase of support bending moment. As a result of this phenomenon, the ultimate limit state of the structural multi span elements might occur after shorter fire duration than it could be expected when redistribution of bending moments is neglected.
出处 《Journal of Civil Engineering and Architecture》 2013年第2期158-173,共16页 土木工程与建筑(英文版)
关键词 Concrete CROSS-SECTION fire design stiffness. 钢筋混凝土梁 再分配 弯矩 楼板 横截面 力学性能 持续时间 极限状态
作者简介 Robert Kowalski, Ph.D., D.Sc., associate professor, research fields: building structures, behavior of RC structures in fire and on influence of high temperature on mechanical properties of concrete and reinforcing steel. E-mail: r.kowalski@il.pw.edu.pl.
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参考文献11

  • 1A.H. Buchanan, Structural Design for Fire Safety, John Wiley and Sons Ltd., New York, 2002, p. 421.
  • 2Fill Bulletin 46, Fire Design of Concrete Structures-Structural Behavior and Assessment, State-of-art Report, Fill (International Federation for Structural Concrete), July 2008, p. 209.
  • 3Fill Bulletin 38, Fire Design for Concrete Structures-Materials, Structures and Modeling, State-of-art Report, Fill (International Federation for Structural Concrete), Apr. 2007, p. 97.
  • 4R. Kowalski, P. Kr61, Experimental examination of residual load bearing capacity of RC beams heated up to high temperature, in: V.K.R. Kodur, 1M. Fransen (Eds.), Sixth International Conference "Structures in Fire", Michigan State University, DEStech Publications Inc., East Lansing, Michigan, USA, 2010, pp. 254-261.
  • 5Eurocode 2, Design of Concrete Structures-Part 1-1: General Rules and Rules for Buildings, Ireland, 2004.
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