Numerical 3D-modeling of spall and shear fractures in shells of austenitic 12Kh18N10T steel and 30KhGSA steel under their spherical and quasi-spherical explosive loading

To pursue VNIIEF-VNIITF joint investigations, this paper briefly describes the experimental setup and provides numerical 3D-computation results (LEGAK-3D technique) on special features in the convergence dynamics of steel shells under their quasi-spherical explosive loading in the system with the 40...

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Veröffentlicht in:Journal of physics. Conference series 2014-01, Vol.490 (1), p.12192-21
Hauptverfasser: Kozlov, E A, Ol'khov, O V, Shuvalova, E V
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container_title Journal of physics. Conference series
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creator Kozlov, E A
Ol'khov, O V
Shuvalova, E V
description To pursue VNIIEF-VNIITF joint investigations, this paper briefly describes the experimental setup and provides numerical 3D-computation results (LEGAK-3D technique) on special features in the convergence dynamics of steel shells under their quasi-spherical explosive loading in the system with the 40-mm outer radius of the explosive layer. The computation results were compared with the data experimentally registered for shells of the high-purity and technical-purity unalloyed iron, the 30KhGSA steel, both as-received and quenched to HRC 35...40, and the austenitic 12Kh18N10T stainless steel. The comparison was also made with laser-interferometry results obtained directly under explosive loading, as well as with gamma-tomography and scanning electron microscopy investigations of the recovered shells.
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subjects Austenitic stainless steels
Chromium manganese steels
Computation
Convergence
Dynamic tests
Dynamical systems
Dynamics
Explosions
Fractures
High strength low alloy steels
Mathematical models
Physics
Purity
Three dimensional models
title Numerical 3D-modeling of spall and shear fractures in shells of austenitic 12Kh18N10T steel and 30KhGSA steel under their spherical and quasi-spherical explosive loading
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