Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading

This paper reports experimental and numerical studies on the post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined compression and bending. A testing programme was firstly performed, including heating and cooling of specimens as well as...

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Main Authors: Zhong, Yukai, Sun, Yao, Tan, Kang Hai, Zhao, Ou
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160111
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1601112022-07-13T01:12:06Z Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading Zhong, Yukai Sun, Yao Tan, Kang Hai Zhao, Ou School of Civil and Environmental Engineering Engineering::Civil engineering Design Interaction Curves Eccentric Compression Tests This paper reports experimental and numerical studies on the post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined compression and bending. A testing programme was firstly performed, including heating and cooling of specimens as well as post-fire material testing, initial local geometric imperfection measurements and eccentric compression tests. The testing programme was followed by a numerical modelling programme, where finite element models were developed and validated against the test results and then employed to carry out parametric studies to generate further numerical data over a wide range of cross-section dimensions and loading combinations. Given that there are no design standards for high strength steel structures after exposure to fire, the design interaction curves for high strength steel tubular section stub columns under combined loading at ambient temperature, as given in the European code, American specification and Australian standard, were evaluated, using post-fire material properties, for their applicability to S700 high strength steel tubular section stub columns under combined loading after exposure to fire. The evaluation results revealed that all the three sets of codified design interaction curves yield overall accurate post-fire residual resistance predictions for S700 high strength steel tubular section stub columns under combined loading, with the highest level of design accuracy offered by the American specification. 2022-07-13T01:12:06Z 2022-07-13T01:12:06Z 2021 Journal Article Zhong, Y., Sun, Y., Tan, K. H. & Zhao, O. (2021). Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading. Thin-Walled Structures, 169, 108275-. https://dx.doi.org/10.1016/j.tws.2021.108275 0263-8231 https://hdl.handle.net/10356/160111 10.1016/j.tws.2021.108275 2-s2.0-85114190367 169 108275 en Thin-Walled Structures © 2021 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Design Interaction Curves
Eccentric Compression Tests
spellingShingle Engineering::Civil engineering
Design Interaction Curves
Eccentric Compression Tests
Zhong, Yukai
Sun, Yao
Tan, Kang Hai
Zhao, Ou
Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
description This paper reports experimental and numerical studies on the post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined compression and bending. A testing programme was firstly performed, including heating and cooling of specimens as well as post-fire material testing, initial local geometric imperfection measurements and eccentric compression tests. The testing programme was followed by a numerical modelling programme, where finite element models were developed and validated against the test results and then employed to carry out parametric studies to generate further numerical data over a wide range of cross-section dimensions and loading combinations. Given that there are no design standards for high strength steel structures after exposure to fire, the design interaction curves for high strength steel tubular section stub columns under combined loading at ambient temperature, as given in the European code, American specification and Australian standard, were evaluated, using post-fire material properties, for their applicability to S700 high strength steel tubular section stub columns under combined loading after exposure to fire. The evaluation results revealed that all the three sets of codified design interaction curves yield overall accurate post-fire residual resistance predictions for S700 high strength steel tubular section stub columns under combined loading, with the highest level of design accuracy offered by the American specification.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Zhong, Yukai
Sun, Yao
Tan, Kang Hai
Zhao, Ou
format Article
author Zhong, Yukai
Sun, Yao
Tan, Kang Hai
Zhao, Ou
author_sort Zhong, Yukai
title Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
title_short Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
title_full Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
title_fullStr Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
title_full_unstemmed Post-fire behaviour and residual resistances of S700 high strength steel tubular section stub columns under combined loading
title_sort post-fire behaviour and residual resistances of s700 high strength steel tubular section stub columns under combined loading
publishDate 2022
url https://hdl.handle.net/10356/160111
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