Dynamic failure of the aluminium plate under air-blast loading in the framework of the fractional viscoplasticity model - theory and validation

•Numerical simulation of the dynamic failure of an aluminium plate under air-blast loading in the framework of the fractional viscoplasticity theory.•Experimental validation.•Plate anisotropy induced by plastic strain evolution and rate-dependence.•Adiabatic conditions.•Time and stress non-localitie...

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Veröffentlicht in:International journal of impact engineering 2021-12, Vol.158, p.104024, Article 104024
Hauptverfasser: Sumelka, Wojciech, Nowak, Marcin, Nassr, Amr A., Al-Rifaie, Hasan, Malendowski, Michał, Gajewski, Tomasz, Peksa, Piotr, Studziński, Robert, Sielicki, Piotr W.
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Sprache:eng
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Zusammenfassung:•Numerical simulation of the dynamic failure of an aluminium plate under air-blast loading in the framework of the fractional viscoplasticity theory.•Experimental validation.•Plate anisotropy induced by plastic strain evolution and rate-dependence.•Adiabatic conditions.•Time and stress non-localities. This paper deals with the numerical simulation of the dynamic failure of an aluminium plate under air-blast loading. Constitutive modelling based on the fractional viscoplasticity is used. The material model is non-local due to the properties of the applied fractional differential operator and is implemented as user material in the engineering finite element computation code ABAQUS. It is important that the numerical simulations are contrasted with experiments. Numerical outcomes clearly show the applicability of the adopted modelling for the description of salient stages of dynamic structural failure.
ISSN:0734-743X
1879-3509
DOI:10.1016/j.ijimpeng.2021.104024