This document reports a numerical and experimental crashworthiness study of a vehicle structural component. Particularly, a windshield A-pillar made of a novel high-strength steel was tested on an apparatus for impact tests that was in-house designed so as to reproduce the effects of a vehicle side impact crash. In parallel, numerical simulations were performed using the explicit finite element code LS-DYNA, considering different elastic-plastic material constitutive laws with damage. A comparison between numerical and experimental outcomes demonstrated a satisfactory correlation, with the GISSMO model that provided a good correlation and needed a relatively low computational effort.
Numerical-experimental study on the crashworthiness of a windshield A-pillar / Armentani, E.; Perrella, M.; Cepollaro, M.; Cepollaro, F.; D'Errico, G.; Giannella, V.. - In: FORCES IN MECHANICS. - ISSN 2666-3597. - 15:(2024), pp. 1-8. [10.1016/j.finmec.2024.100273]
Numerical-experimental study on the crashworthiness of a windshield A-pillar
Armentani E.;Perrella M.
;
2024
Abstract
This document reports a numerical and experimental crashworthiness study of a vehicle structural component. Particularly, a windshield A-pillar made of a novel high-strength steel was tested on an apparatus for impact tests that was in-house designed so as to reproduce the effects of a vehicle side impact crash. In parallel, numerical simulations were performed using the explicit finite element code LS-DYNA, considering different elastic-plastic material constitutive laws with damage. A comparison between numerical and experimental outcomes demonstrated a satisfactory correlation, with the GISSMO model that provided a good correlation and needed a relatively low computational effort.File | Dimensione | Formato | |
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