Design and switching position optimization of multi-stage coilgun

A multi-stage, cylindrical launcher is being tested to demonstrate electrically-contactless, induction-launch technology for solenoidal coil geometry. The field model was developed by using the finite element method (FEM). This paper presents an analysis and optimal design of a capacitor-driven indu...

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Hauptverfasser: Vaneghi, M. Mahmoodi, Khatibzadeh, A. A., Khanbeigi, G. A., Besmi, M. R.
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creator Vaneghi, M. Mahmoodi
Khatibzadeh, A. A.
Khanbeigi, G. A.
Besmi, M. R.
description A multi-stage, cylindrical launcher is being tested to demonstrate electrically-contactless, induction-launch technology for solenoidal coil geometry. The field model was developed by using the finite element method (FEM). This paper presents an analysis and optimal design of a capacitor-driven inductive coilgun to survey the effect of coils' switching position on velocity of projectile.
doi_str_mv 10.1109/ICBEIA.2011.5994227
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Acceleration
Capacitors
Coilgun
Coilguns
Coils
discharge position
Firing
Firing Optimization
Launcher
Muzzle velocity
Projectile acceleration
Projectiles
Sensors
title Design and switching position optimization of multi-stage coilgun
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