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Numerical Simulation of Explosive Forming Using Detonating Fuse.

Authors :
Iyama, H.
Higa, Y.
Nishi, M.
Itoh, S.
Source :
International Journal of Multiphysics; 2017, Vol. 11 Issue 3, p233-244, 12p, 5 Diagrams, 3 Charts, 8 Graphs
Publication Year :
2017

Abstract

The explosive forming is a characteristic method. An underwater shock wave is generated by underwater explosion of an explosive. A metal plate is affected high strain rate by the shock loading and is formed along a metal die. Although this method has the advantage of mirroring the shape of the die, a free forming was used in this paper. An expensive metal die is not necessary for this free forming. It is possible that a metal plate is formed with simple supporting parts. However, the forming shape depends on the shock pressure distribution act on the metal plate. This pressure distribution is able to change by the shape of explosive, a mass of explosive and a shape of pressure vessel. On the other hand, we need the pressure vessel for food processing by the underwater shock wave. Therefore, we propose making the pressure vessel by this explosive forming. One design suggestion of pressure vessel made of stainless steel was considered. However, we cannot decide suitable conditions, the mass of the explosive and the distance between the explosive and the metal plate to make the pressure vessel. In order to decide these conditions, we have tried the numerical simulation on this explosive forming. The basic simulation method was ALE (Arbitrary Lagrangian-Eulerian) method including with Mie-Grüneisen EOS (equation of state), JWL EOS, Johnson-Cook constitutive equation for a material model. In this paper, the underwater pressure contours to clear the propagations of the underwater shock wave, forming processes and deformation velocity of the metal plate is shown and it will be discussed about those results. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17509548
Volume :
11
Issue :
3
Database :
Complementary Index
Journal :
International Journal of Multiphysics
Publication Type :
Academic Journal
Accession number :
125354055
Full Text :
https://doi.org/10.21152/1750-9548.11.3.233