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Article Dans Une Revue International Journal of Impact Engineering Année : 2015

Perforation of aluminium alloy thin plates

Résumé

Low velocity perforation of aeronautical aluminium alloy sheets 2024 T3 is studied in this paper. After a literature review on recent experiments and models of plate's perforation, experimental results for 2 thicknesses (2 mm and 4 mm) of plates are presented. Perforation tests are performed with an instrumented drop test. The striker has a large diameter and a conical shape nose. Two models for perforation are presented and calibrated to bring a better understanding of the experiments. The first one is an analytical model based on an energetic approach. The second one is a numerical shell Finite Element FE model. A Johnson Cook phenomenological behaviour law of the plate's material is implemented in the finite element code Abaqus/Explicit. The velocity, the evolution of the impact force, the absorbed energy and the cracks' propagation are analysed.
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Dates et versions

hal-02302191 , version 1 (01-10-2019)

Identifiants

  • HAL Id : hal-02302191 , version 1

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Léonard Antoinat, Régis Kubler, Jean-Luc Barou, Philippe Viot, Laurent Barrallier. Perforation of aluminium alloy thin plates. International Journal of Impact Engineering, 2015, 75, pp.255-267. ⟨hal-02302191⟩
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