Validated model-based simulation tool for design optimization of exploding foil initiators

Author:

Ebenhöch Stefan1,Nau Siegfried1,Häring Ivo1

Affiliation:

1. Fraunhofer Ernst-Mach-Institute, Germany

Abstract

Exploding foil initiators (EFIs) are highly suitable for use in inline fuze trains containing only secondary high explosives, mainly due to their insensitivity with respect to electromagnetic disturbances or mechanical stress, their precisely controllable fire characteristics and compact size. During EFI operation various multi-physical phenomena occur, such as high-volt switching, foil explosion, generation and acceleration of the flyer plate, as well as shock wave initiation of the explosive by flyer plate impact. In this work all the physical processes, including their coupling, are modelled using multi-physical models that neither employ complex finite elements computations nor experimentally determined fitting parameters. Implemented in a simulation tool, the complete EFI behaviour is covered, from firing (switching) to explosive initiation. Complementary experiments with test structures are conducted, analysing the electrical behaviour and the resulting flyer velocities of different EFI designs. Comparison with these experiments demonstrates the consistency of the simulations and sufficient accuracy. The validated simulation tool is used to determine all-fire/no-fire criteria, to improve geometries and materials and to analyse parasitic influences in the firing circuit. The paper shows that this model-based approach can be used to assess high reliability and safety either for existing or when developing new EFIs.

Publisher

SAGE Publications

Subject

Engineering (miscellaneous),Modeling and Simulation

Reference32 articles.

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2. Schadow KC. Mems aerospace application. NATO-Research and Technology Organisation, 2003.

3. STANAG 4187 Ed. 4. Safety design requirements for fuzing systems, standardization agreement (Stanag). North Atlantic Treaty Organization (NATO), Military Agency for Standardization (MAS), 2007.

4. AOP-16 Ed. 4. Fuzing systems: guidlines for Stanag 4187. Allied Ordnance Publication, North Atlantic Treaty Organization (NATO), Military Standardization Agency (NSA), CNAD Ammunition Safety Group (AC/326), 2007.

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