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Published in: Fire Technology 2/2018

16-12-2017

A Simplified Approach for Fire Resistance Design of High Strength Q460 Steel Beams Subjected to Non-uniform Temperature Distribution

Authors: Weiyong Wang, Hongyang Zhou, Yichao Zhou, Lei Xu

Published in: Fire Technology | Issue 2/2018

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Abstract

Presented in this paper is an analytical investigation on fire resistance of high strength Q460 steel beam subjected to non-uniform temperature distribution. Based on the critical bending moment associated with overall flexural stability and results obtained from the previous experimental investigation on the mechanical properties of Q460 steel at elevated temperature, an equivalent stiffness method is established to evaluate the fire resistance of the beam with the consideration of the influence of temperature gradient across the section of the beam. Lateral torsional buckling resistance, critical temperature and overall stability coefficient are obtained for flexure of high strength Q460 steel beams at elevated temperature. A 3-D nonlinear finite element model, which is capable of accounting for temperature gradient and predicting critical bending moment of Q460 steel beam at elevated temperature, is developed. Results from the finite element simulations are compared with the results determined by the proposed equivalent stiffness method and there is a good agreement between the results of the two methods with the maximum difference of 6%. Using the equivalent stiffness method, parametric studies were carried out to investigate effects of steel grade and temperature distribution pattern on fire resistance of high strength Q460 steel beams. Accordingly, a simplified design approach was proposed to predict the critical temperature and overall stability coefficient of Q460 steel beams subjected to non-uniform temperature distribution. The simplified approach is applicable to high strength Q460 steel beams with cross section dimensions ranging from 175 mm to 350 mm and 250 mm to 500 mm for flange width and section height, respectively.

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Literature
1.
go back to reference Wang WY, Li GQ (2010) Fire-resistance performance of high-strength-steel H shaped columns under the axial compression. J Chongqing Univ 33(10):76–81CrossRef Wang WY, Li GQ (2010) Fire-resistance performance of high-strength-steel H shaped columns under the axial compression. J Chongqing Univ 33(10):76–81CrossRef
2.
go back to reference Wang WY, Li GQ (2011) Numerical method for load bearing capacity of high strength steel columns at elevated temperature. J Civil Archit Environ Eng 33(6):13–18 Wang WY, Li GQ (2011) Numerical method for load bearing capacity of high strength steel columns at elevated temperature. J Civil Archit Environ Eng 33(6):13–18
3.
go back to reference Skowronski W (1988) A study of the steel beam deformation during fire. Build Environ 23(2):159–167CrossRef Skowronski W (1988) A study of the steel beam deformation during fire. Build Environ 23(2):159–167CrossRef
4.
go back to reference Burgess IW, El Rimawi J, Plank R J (1991) Studies of the behavior of steel beams in fire. J Constr Steel Res 19(4):285–312CrossRef Burgess IW, El Rimawi J, Plank R J (1991) Studies of the behavior of steel beams in fire. J Constr Steel Res 19(4):285–312CrossRef
5.
go back to reference Liu T, Fahad MK, Davies JM (2002) Experimental investigation of behavior of axially restrained steel beams in fire. J Constr Steel Res 58(9):1211–1230CrossRef Liu T, Fahad MK, Davies JM (2002) Experimental investigation of behavior of axially restrained steel beams in fire. J Constr Steel Res 58(9):1211–1230CrossRef
6.
go back to reference Vila Real PMM, Piloto PAG, Franssen J.-M (2003) A new proposal of a simple model for the lateral-torsional buckling of unrestrained steel I-beams in case of fire: experimental and numerical validation. J Constr Steel Res 59(2):179–199CrossRef Vila Real PMM, Piloto PAG, Franssen J.-M (2003) A new proposal of a simple model for the lateral-torsional buckling of unrestrained steel I-beams in case of fire: experimental and numerical validation. J Constr Steel Res 59(2):179–199CrossRef
7.
go back to reference Vila Real PMM, Lopes N, Simes da Silva L, et al (2007) Parametric analysis of the lateral–torsional buckling resistance of steel beams in case of fire. Fire Saf J 42(6-7):416–424CrossRef Vila Real PMM, Lopes N, Simes da Silva L, et al (2007) Parametric analysis of the lateral–torsional buckling resistance of steel beams in case of fire. Fire Saf J 42(6-7):416–424CrossRef
8.
go back to reference Yin YZ, Wang YC (2003) Numerical simulations of the effects of non-uniform temperature distributions on lateral torsional buckling resistance of steel I-beams. J Constr Steel Res 59(8):1009–1033CrossRef Yin YZ, Wang YC (2003) Numerical simulations of the effects of non-uniform temperature distributions on lateral torsional buckling resistance of steel I-beams. J Constr Steel Res 59(8):1009–1033CrossRef
9.
go back to reference Mesquita LMR, Piloto PAG, Vaz MAP, Vila Real PMM (2005) Experimental and numerical research on the critical temperature of laterally unrestrained steel I beams. J Constr Steel Res 61(10):1435–1446CrossRef Mesquita LMR, Piloto PAG, Vaz MAP, Vila Real PMM (2005) Experimental and numerical research on the critical temperature of laterally unrestrained steel I beams. J Constr Steel Res 61(10):1435–1446CrossRef
10.
go back to reference Zhang C, Li GQ, Usmani A (2013) Simulating the behavior of restrained steel beams to flame impingement from localized-fires. J Constr Steel Res 83:156–165CrossRef Zhang C, Li GQ, Usmani A (2013) Simulating the behavior of restrained steel beams to flame impingement from localized-fires. J Constr Steel Res 83:156–165CrossRef
11.
go back to reference Varol H, CashellK A (2017) Numerical modelling of high strength steel beams at elevated temperature. Fire Saf J 89:41–50CrossRef Varol H, CashellK A (2017) Numerical modelling of high strength steel beams at elevated temperature. Fire Saf J 89:41–50CrossRef
12.
go back to reference ENV 1993-1-2 (2005) Eurocode 3, design of steel structures, Part 1–2: general rules and rules for buildings. European Committee for Standardization, Brussels ENV 1993-1-2 (2005) Eurocode 3, design of steel structures, Part 1–2: general rules and rules for buildings. European Committee for Standardization, Brussels
13.
go back to reference Wang WY, Liu B, Kodur V (2013) Effect of temperature on strength and elastic modulus of high-strength steel. J Mater Civil Eng 25(2):174–182 Wang WY, Liu B, Kodur V (2013) Effect of temperature on strength and elastic modulus of high-strength steel. J Mater Civil Eng 25(2):174–182
14.
go back to reference Liu B, Wang WY, Li GQ, Dai GX (2012) Study of fire resistance of high strength Q460 steel columns. J Civil Eng 45(9):19–26 Liu B, Wang WY, Li GQ, Dai GX (2012) Study of fire resistance of high strength Q460 steel columns. J Civil Eng 45(9):19–26
15.
go back to reference CECS200: 2006 (2006) China technical code for fire safety of steel structure in buildings. China Planning Press, Beijing CECS200: 2006 (2006) China technical code for fire safety of steel structure in buildings. China Planning Press, Beijing
16.
go back to reference Wang WY, Zhou YC (2014) Fire resistance analysisof high strength Q460 steelbeams—Part I: theoreticalanalysis. J Civil Archit Environ Eng 36(3):64–71 Wang WY, Zhou YC (2014) Fire resistance analysisof high strength Q460 steelbeams—Part I: theoreticalanalysis. J Civil Archit Environ Eng 36(3):64–71
17.
go back to reference GB 50017 (2003) China Code for design of steel structure. China Planning Press, Beijing GB 50017 (2003) China Code for design of steel structure. China Planning Press, Beijing
18.
go back to reference Li GQ, Guo SX (2008) Experiment on restrained steel beams subjected to heating and cooling. J Constr Steel Res 64:268–274CrossRef Li GQ, Guo SX (2008) Experiment on restrained steel beams subjected to heating and cooling. J Constr Steel Res 64:268–274CrossRef
Metadata
Title
A Simplified Approach for Fire Resistance Design of High Strength Q460 Steel Beams Subjected to Non-uniform Temperature Distribution
Authors
Weiyong Wang
Hongyang Zhou
Yichao Zhou
Lei Xu
Publication date
16-12-2017
Publisher
Springer US
Published in
Fire Technology / Issue 2/2018
Print ISSN: 0015-2684
Electronic ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-017-0691-x

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