Numerical Simulation of Stretch Bending for L-section Aluminum Alloy Profile
Auteur(s): |
Y. Liu
L. Song J. Yin F. Ma Z. Sha D. Yang S. Zhang |
---|---|
Médium: | article de revue |
Langue(s): | anglais |
Publié dans: | Electronic Journal of Structural Engineering, juin 2018, n. 2, v. 18 |
Page(s): | 67-75 |
DOI: | 10.56748/ejse.182652 |
Abstrait: |
High precision stretch bending of aluminum alloy profile is the key technology for making car’s frame body. A numerical simulation study on the displacement-controlled process for a typical kind of L-section aluminum alloy profile used in high-speed rail with finite element analysis software is presented. The effect of different friction coefficients, with or without baffle and cover plate on the equivalent stress,strain and cross-sectional distortion are investigated. It is shown that the increase of the friction coefficient can increase the cross-sectional distortion, equivalent stress and strain. The installation of baffle and cover plate can significantly reduce the cross-sectional distortion in the middle section of the profile, and increase the equivalent stress and strain to some extent. |
- Informations
sur cette fiche - Reference-ID
10778743 - Publié(e) le:
12.05.2024 - Modifié(e) le:
12.05.2024