Verification of the Ramberg-Osgood Material Model for the Fire Design of Steel Members

Author:

Nemer Samer1

Affiliation:

1. 1 Dept. of Structural and Geotechnical Engineering , Széchenyi István University , Győr , Hungary

Abstract

Abstract In this paper, the modified Ramberg-Osgood constitutive equations for calculating the stress-strain of steel at elevated temperatures using the parameters determined based on the transient state tensile test results achieved at the Helsinki University of Technology are verified. This is done by numerically comparing the global and local buckling capacities of I-shaped steel members incorporating the modified Ramberg-Osgood model along with the material model given in the fire section of Eurocode EN1993-1-2. For this purpose, a numerical model using the ABAQUS software was developed. Then, nonlinear analyses with imperfections (GMNIA) were performed to compare the buckling capacities of the steel columns and beams of four different hot-rolled cross-sections (IPE160, IPE180, HE100B, HE500B), made of steel grade S355, at three different temperatures (400°C, 500°C, 600°C). The results showed that adopting the modified Ramberg-Osgood model can lead to the same buckling capacities resulting when using the EN1993-1-2 material model for steel temperatures of less than 400°C. However, adopting this model for 600°C overestimates the buckling capacities in most cases.

Publisher

Walter de Gruyter GmbH

Reference21 articles.

1. British Standard BS 5950, Part 8, Code of Practice for Fire Resistance Design. British Standard Institution. 2000.

2. BS EN 1090 2 (2008) Execution of steel structures and aluminium structures Part 2: Technical requirements for steel structures. 2008. BSI, London, UK.

3. EN 1993-1-2 (2005) Eurocode 3, Design of steel structures – Part 1–2: General rules Structural fire design. In: European committee for standardization. Brussels, Belgium; 2005.

4. European Convention for Construction Steelwork. Calculation for Fire Resistance of Composite Structures. Technical Note No. 55, ECCS Technical Committee 3, 1989.

5. European Convention for Constructional Steelwork (ECCS). (1976) Manual on stability of steel structures, 2nd ed. Technical Committee 8, Structural stability. 1976. www.eccspublications.eu

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