Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design

The flexural buckling behaviour and resistances of cold-formed austenitic stainless steel flat-oval hollow section columns are studied in this paper, based on experiments and numerical modelling. An experimental investigation was firstly conducted and included tensile coupon tests, initial geometric...

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Main Authors: Li, Shuai, Liang, Yating, Chen, Man-Tai, Zhao, Ou
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2024
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Online Access:https://hdl.handle.net/10356/175813
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1758132024-05-07T02:21:48Z Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design Li, Shuai Liang, Yating Chen, Man-Tai Zhao, Ou School of Civil and Environmental Engineering Engineering Austenitic stainless steel Buckling curves The flexural buckling behaviour and resistances of cold-formed austenitic stainless steel flat-oval hollow section columns are studied in this paper, based on experiments and numerical modelling. An experimental investigation was firstly conducted and included tensile coupon tests, initial geometric imperfection measurements and major-axis and minor-axis pin-ended compression tests on ten column specimens. The experimental investigation was followed by a numerical investigation, where the column test results were used to validate finite element models; upon validation, parametric studies were conducted to generate additional numerical data over a wide range of cross-section dimensions and member effective lengths. The obtained test and numerical data were adopted to assess the applicability of the relevant buckling curves for cold-formed austenitic stainless steel circular and elliptical hollow section columns, as specified in the European code, American specification and Australian/New Zealand standard, to cold-formed austenitic stainless steel flat-oval hollow section columns. It was revealed from the assessment results that the buckling curves of the European code and American specification led to overall accurate and consistent flexural buckling resistance predictions, while the flexural buckling resistance predictions from the buckling curve of the Australian/New Zealand standard were slightly conservative. The research work presented in this paper receives financial supports from the Regency Steel Asia (RSA) Endowment Fund, Singapore (Award Number: 03INS001251C120). 2024-05-07T02:21:47Z 2024-05-07T02:21:47Z 2024 Journal Article Li, S., Liang, Y., Chen, M. & Zhao, O. (2024). Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design. Thin-Walled Structures, 199, 111795-. https://dx.doi.org/10.1016/j.tws.2024.111795 0263-8231 https://hdl.handle.net/10356/175813 10.1016/j.tws.2024.111795 2-s2.0-85187959112 199 111795 en 03INS001251C120 Thin-Walled Structures © 2024 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
Austenitic stainless steel
Buckling curves
spellingShingle Engineering
Austenitic stainless steel
Buckling curves
Li, Shuai
Liang, Yating
Chen, Man-Tai
Zhao, Ou
Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
description The flexural buckling behaviour and resistances of cold-formed austenitic stainless steel flat-oval hollow section columns are studied in this paper, based on experiments and numerical modelling. An experimental investigation was firstly conducted and included tensile coupon tests, initial geometric imperfection measurements and major-axis and minor-axis pin-ended compression tests on ten column specimens. The experimental investigation was followed by a numerical investigation, where the column test results were used to validate finite element models; upon validation, parametric studies were conducted to generate additional numerical data over a wide range of cross-section dimensions and member effective lengths. The obtained test and numerical data were adopted to assess the applicability of the relevant buckling curves for cold-formed austenitic stainless steel circular and elliptical hollow section columns, as specified in the European code, American specification and Australian/New Zealand standard, to cold-formed austenitic stainless steel flat-oval hollow section columns. It was revealed from the assessment results that the buckling curves of the European code and American specification led to overall accurate and consistent flexural buckling resistance predictions, while the flexural buckling resistance predictions from the buckling curve of the Australian/New Zealand standard were slightly conservative.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Li, Shuai
Liang, Yating
Chen, Man-Tai
Zhao, Ou
format Article
author Li, Shuai
Liang, Yating
Chen, Man-Tai
Zhao, Ou
author_sort Li, Shuai
title Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
title_short Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
title_full Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
title_fullStr Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
title_full_unstemmed Flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
title_sort flexural buckling of cold-formed austenitic stainless steel flat-oval hollow section columns: testing, modelling and design
publishDate 2024
url https://hdl.handle.net/10356/175813
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