Structural response and design of stainless steel hollow section columns at elevated temperatures

Author:

Quan Chunyan1,Kucukler Merih1

Affiliation:

1. School of Engineering, University of Warwick Coventry CV4 7AL UK

Abstract

AbstractThis paper investigates the flexural buckling behaviour and design of stainless steel circular, elliptical, square and rectangular hollow section (CHS, EHS, SHS and RHS) columns at elevated temperatures through numerical modelling. Shell finite element models are utilised to perform numerical parametric studies whereby benchmark structural performance data are generated. A large number of cold‐formed and hot‐rolled austenitic, duplex and ferritic stainless steel CHS, EHS, SHS and RHS columns at elevated temperatures are taken into account, considering various cross‐section and member slendernesses. Since the fire design provisions provided in the European fire design standard EN 1993‐1‐2 for stainless steel columns are largely based on those originally developed for carbon steel columns, they typically lead to rather inaccurate ultimate resistance predictions for stainless steel columns at elevated temperatures. To address this, in the present study, a new flexural buckling design method for stainless steel hollow section columns at elevated temperatures is put forward. The accuracy, safety and reliability of the proposed design method and the provisions in EN 1993‐1‐2 are assessed. It is observed that the proposed fire design method leads to more accurate, safe‐sided and reliable flexural buckling resistance predictions for stainless steel hollow section columns at elevated temperatures relative to the provisions in EN 1993‐1‐2.

Funder

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference23 articles.

1. EN 1993‐1‐2(2005)Eurocode 3: Design of Steel Structures‐Part 1‐2: General Rules – Structural Fire Design.European Committee for Standardization Brussels.

2. Lopes N. Vila Real P.(2014)Fire resistance of stainless steel structural elements with class 4 square hollow sections subject to combined bending and axial compression. Proceedings of 8th International Conference on Structures in Fire (SiF14 – Shanghai 11‐13/6 2014) p.729–736.

3. Axially Loaded Stainless Steel Columns in Case of Fire

4. Behaviour and design of stainless steel I-section columns in fire

5. prEN 1993‐1‐2(2021)Eurocode 3: Design of steel structures – Part 1‐2: General rules – Structural fire design.

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