Flexural buckling behaviour of high-chromium stainless steel welded I-section columns

The present paper reports experimental and numerical studies of the minor-axis flexural buckling behaviour and resistances of welded I-section columns made of a newly developed grade EN 1.4420 high-chromium austenitic stainless steel. The structural testing programme comprised ten pin-ended column t...

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Main Authors: Sun, Yao, He, An, Liang, Yating, 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/10356/155106
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1551062022-02-14T02:29:32Z Flexural buckling behaviour of high-chromium stainless steel welded I-section columns Sun, Yao He, An Liang, Yating Zhao, Ou School of Civil and Environmental Engineering Engineering::Civil engineering Design Analysis Flexural Buckling Behaviour The present paper reports experimental and numerical studies of the minor-axis flexural buckling behaviour and resistances of welded I-section columns made of a newly developed grade EN 1.4420 high-chromium austenitic stainless steel. The structural testing programme comprised ten pin-ended column tests as well as supplementary measurements of the initial global and local geometric imperfections of the column specimens. The structural testing programme was accompanied by a numerical modelling programme, including a validation study, where column finite element models were developed and validated against the experimental results, and a parametric study, where the validated column finite element models were employed to generate an additional numerical data bank over a broad spectrum of cross-section dimensions and member effective lengths. The obtained test and numerical data, were adopted to evaluate the applicability of the design provisions for normal stainless steel welded I-section columns, as set out in the current European code and American design guide, and cold-formed doubly symmetric section columns, as given in the existing Australian/New Zealand standard and American specification, to the new high-chromium stainless steel welded I-section columns. Overall, it was found that (i) all the four considered codes can be safely extended to cover the design of high-chromium stainless steel welded I-section columns, except for the American specification, which results in unsafe flexural buckling resistance predictions, and (ii) the most accurate and consistent design flexural buckling resistances were obtained by using the European code. Nanyang Technological University The authors are also grateful to the assistance from Mr. Subasanran Chelladurai in the experiments and to the financial support from NTU research scholarship. 2022-02-14T02:29:32Z 2022-02-14T02:29:32Z 2020 Journal Article Sun, Y., He, A., Liang, Y. & Zhao, O. (2020). Flexural buckling behaviour of high-chromium stainless steel welded I-section columns. Thin-Walled Structures, 154, 106812-. https://dx.doi.org/10.1016/j.tws.2020.106812 0263-8231 https://hdl.handle.net/10356/155106 10.1016/j.tws.2020.106812 2-s2.0-85086640379 154 106812 en Thin-Walled Structures © 2020 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 Analysis
Flexural Buckling Behaviour
spellingShingle Engineering::Civil engineering
Design Analysis
Flexural Buckling Behaviour
Sun, Yao
He, An
Liang, Yating
Zhao, Ou
Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
description The present paper reports experimental and numerical studies of the minor-axis flexural buckling behaviour and resistances of welded I-section columns made of a newly developed grade EN 1.4420 high-chromium austenitic stainless steel. The structural testing programme comprised ten pin-ended column tests as well as supplementary measurements of the initial global and local geometric imperfections of the column specimens. The structural testing programme was accompanied by a numerical modelling programme, including a validation study, where column finite element models were developed and validated against the experimental results, and a parametric study, where the validated column finite element models were employed to generate an additional numerical data bank over a broad spectrum of cross-section dimensions and member effective lengths. The obtained test and numerical data, were adopted to evaluate the applicability of the design provisions for normal stainless steel welded I-section columns, as set out in the current European code and American design guide, and cold-formed doubly symmetric section columns, as given in the existing Australian/New Zealand standard and American specification, to the new high-chromium stainless steel welded I-section columns. Overall, it was found that (i) all the four considered codes can be safely extended to cover the design of high-chromium stainless steel welded I-section columns, except for the American specification, which results in unsafe flexural buckling resistance predictions, and (ii) the most accurate and consistent design flexural buckling resistances were obtained by using the European code.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Sun, Yao
He, An
Liang, Yating
Zhao, Ou
format Article
author Sun, Yao
He, An
Liang, Yating
Zhao, Ou
author_sort Sun, Yao
title Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
title_short Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
title_full Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
title_fullStr Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
title_full_unstemmed Flexural buckling behaviour of high-chromium stainless steel welded I-section columns
title_sort flexural buckling behaviour of high-chromium stainless steel welded i-section columns
publishDate 2022
url https://hdl.handle.net/10356/155106
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