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3D FEM to predict residual stresses of press-braked thin-walled steel sections


Citation

Mutafi, Ayad and Yidris, Noorfaizal and Ishak, Mohamad Ridzwan and Zahari, Rizal (2017) 3D FEM to predict residual stresses of press-braked thin-walled steel sections. In: Global Civil Engineering Conference (GCEC 2017), 25-28 July 2017, Kuala Lumpur, Malaysia. (pp. 215-224).

Abstract

Cold-formed steel sections are normally produced by cold work manufacturing processes. The amount of cold work to form the sections may have induced residual stresses in the section especially in the area of bending. Hence, these cold work processes may have significant effects on the section behaviour and load-bearing capacity. There was a lack of studies in investigating the effects of residual stresses raised by press-braking operations unlike the roll-forming operation. Therefore, a 3D finite element simulation was employed to simulate this forming process. This study investigated the magnitude of the maximum residual stresses along the length of the corner region and through-thickness residual stress variations induced by the press-braking forming process. The study concluded that residual stresses are not linear longitudinally (along the corner region). Maximum residual stresses exist near the middle surface of the plate. The comparison of the 3D-FE results with the 2D-FE results illustrate that 3D-FE has a variation in transverse and longitudinal residual stresses along the plate length. In addition, 2D-FE results overestimate the residual stresses along the corner region.


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Additional Metadata

Item Type: Conference or Workshop Item (Paper)
Divisions: Faculty of Engineering
DOI Number: https://doi.org/10.1007/978-981-10-8016-6_16
Publisher: Springer Nature Singapore
Keywords: Cold-formed steel; FEM; Residual stresses
Depositing User: Nabilah Mustapa
Date Deposited: 13 Aug 2018 03:10
Last Modified: 13 Aug 2018 03:10
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1007/978-981-10-8016-6_16
URI: http://psasir.upm.edu.my/id/eprint/64603
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