Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure

A testing and numerical modelling programme was performed to investigate the in-plane flexural behaviour and cross-section bending capacities of S960 ultra-high strength steel welded I-section beams and presented in this paper. The testing programme included material testing, membrane residual stres...

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Main Authors: Su, Andi, Yang, Hua, Wang, Yajin, Zhao, Ou
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/171379
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1713792023-10-23T07:03:22Z Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure Su, Andi Yang, Hua Wang, Yajin Zhao, Ou School of Civil and Environmental Engineering Engineering::Civil engineering Cross-Section Bending Capacity Four-Point Bending Tests A testing and numerical modelling programme was performed to investigate the in-plane flexural behaviour and cross-section bending capacities of S960 ultra-high strength steel welded I-section beams and presented in this paper. The testing programme included material testing, membrane residual stress measurements, initial local geometric imperfection measurements and eight in-plane four-point bending tests, with four performed about each of the cross-section minor and major principal axes. This was followed by the numerical modelling programme, where finite element models were developed and validated against the test results and then used to perform parametric studies to generate further numerical data over a wide variety of cross-section dimensions and span lengths. The obtained test and numerical data were used to evaluate the applicability of the design rules for cross-section classification and bending capacities, as prescribed in the European code, Australian standard and American specification, to S960 ultra-high strength steel welded I-section beams. The evaluation results revealed that all codified slenderness limits were safe (though conservative to different extents) when used for classifying the constituent plate elements of S960 ultra-high strength steel welded I-sections in bending. Moreover, all three considered design codes were shown to result in accurate and consistent bending capacity predictions for Class 1 and 2 (or compact) S960 ultra-high strength steel welded I-sections, but conservative bending capacity predictions, to different extents, for Class 3 (or non-compact) and Class 4 (or slender) S960 ultra-high strength steel welded I-sections. The research in this paper is financially supported by the RSA Endowment Fund, Singapore (Award Number: 03INS001251C120). The S960 ultra-high strength steel welded I-section beam specimens were fabricated by SSAB Swedish Steel Pte Ltd. Singapore. 2023-10-23T07:03:22Z 2023-10-23T07:03:22Z 2023 Journal Article Su, A., Yang, H., Wang, Y. & Zhao, O. (2023). Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure. Thin-Walled Structures, 190, 110969-. https://dx.doi.org/10.1016/j.tws.2023.110969 0263-8231 https://hdl.handle.net/10356/171379 10.1016/j.tws.2023.110969 2-s2.0-85164709398 190 110969 en 03INS001251C120 Thin-Walled Structures © 2023 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
Cross-Section Bending Capacity
Four-Point Bending Tests
spellingShingle Engineering::Civil engineering
Cross-Section Bending Capacity
Four-Point Bending Tests
Su, Andi
Yang, Hua
Wang, Yajin
Zhao, Ou
Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
description A testing and numerical modelling programme was performed to investigate the in-plane flexural behaviour and cross-section bending capacities of S960 ultra-high strength steel welded I-section beams and presented in this paper. The testing programme included material testing, membrane residual stress measurements, initial local geometric imperfection measurements and eight in-plane four-point bending tests, with four performed about each of the cross-section minor and major principal axes. This was followed by the numerical modelling programme, where finite element models were developed and validated against the test results and then used to perform parametric studies to generate further numerical data over a wide variety of cross-section dimensions and span lengths. The obtained test and numerical data were used to evaluate the applicability of the design rules for cross-section classification and bending capacities, as prescribed in the European code, Australian standard and American specification, to S960 ultra-high strength steel welded I-section beams. The evaluation results revealed that all codified slenderness limits were safe (though conservative to different extents) when used for classifying the constituent plate elements of S960 ultra-high strength steel welded I-sections in bending. Moreover, all three considered design codes were shown to result in accurate and consistent bending capacity predictions for Class 1 and 2 (or compact) S960 ultra-high strength steel welded I-sections, but conservative bending capacity predictions, to different extents, for Class 3 (or non-compact) and Class 4 (or slender) S960 ultra-high strength steel welded I-sections.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Su, Andi
Yang, Hua
Wang, Yajin
Zhao, Ou
format Article
author Su, Andi
Yang, Hua
Wang, Yajin
Zhao, Ou
author_sort Su, Andi
title Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
title_short Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
title_full Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
title_fullStr Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
title_full_unstemmed Experimental and numerical investigations of S960 ultra-high strength steel welded I-section beams with in-plane flexural failure
title_sort experimental and numerical investigations of s960 ultra-high strength steel welded i-section beams with in-plane flexural failure
publishDate 2023
url https://hdl.handle.net/10356/171379
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