Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry

The dynamic behaviour of armour steel in tension was investigated over a wide range of strain-rates on round specimens. The experiments were carried out by means of a Split Hopkinson Tensile Bar device and by a Hydro Pneumatic Machine. The target strain rate were set at the following six levels: 10−...

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Main Authors: Cadoni Ezio, Dotta Matteo, Forni Daniele, Riganti Gianmario, Kaufmann Hanspeter
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20159405004
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author Cadoni Ezio
Dotta Matteo
Forni Daniele
Riganti Gianmario
Kaufmann Hanspeter
author_facet Cadoni Ezio
Dotta Matteo
Forni Daniele
Riganti Gianmario
Kaufmann Hanspeter
author_sort Cadoni Ezio
collection DOAJ
description The dynamic behaviour of armour steel in tension was investigated over a wide range of strain-rates on round specimens. The experiments were carried out by means of a Split Hopkinson Tensile Bar device and by a Hydro Pneumatic Machine. The target strain rate were set at the following six levels: 10−3, 5, 25, 100, 500 and 1000 s−1. Two material models were calibrated and used to replicate the experiments and to simulate blasting event on steel plate. Finally, the two responses are compared.
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spelling doaj.art-2796109cc36148a697050bc86b60f59a2022-12-21T22:38:33ZengEDP SciencesEPJ Web of Conferences2100-014X2015-01-01940500410.1051/epjconf/20159405004epjconf-dymat2015_05004Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industryCadoni Ezio0Dotta Matteo1Forni DanieleRiganti Gianmario2Kaufmann Hanspeter3DynaMat Laboratory, University of Applied Sciences of Southern SwitzerlandDepartment of Structural, Geotechnical and Building Engineering – Politecnico di TorinoDynaMat Laboratory, University of Applied Sciences of Southern SwitzerlandRUAG Defence AGThe dynamic behaviour of armour steel in tension was investigated over a wide range of strain-rates on round specimens. The experiments were carried out by means of a Split Hopkinson Tensile Bar device and by a Hydro Pneumatic Machine. The target strain rate were set at the following six levels: 10−3, 5, 25, 100, 500 and 1000 s−1. Two material models were calibrated and used to replicate the experiments and to simulate blasting event on steel plate. Finally, the two responses are compared.http://dx.doi.org/10.1051/epjconf/20159405004
spellingShingle Cadoni Ezio
Dotta Matteo
Forni Daniele
Riganti Gianmario
Kaufmann Hanspeter
Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
EPJ Web of Conferences
title Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
title_full Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
title_fullStr Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
title_full_unstemmed Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
title_short Experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
title_sort experimental and numerical analysis of the dynamic behaviour in tension of an armour steel for applications in defence industry
url http://dx.doi.org/10.1051/epjconf/20159405004
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