Single-Turn Magnet With an Additional Balanced Winding and Flux Concentrators

The balanced winding displaced in the cavity, the magnet provides the possibility for obtaining the stronger magnet field without enhancing mechanical stresses in the conductors. The model of such a system is the single-turn magnet with an additional triple-thread spiral winding. The equilibrium con...

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Veröffentlicht in:IEEE transactions on plasma science 2017-11, Vol.45 (11), p.3038-3041
Hauptverfasser: Shneerson, German Abramovich, Danilin, Kirill Alexandrovich, Nenashev, Alexey Pavlovich, Parfentiev, Anatoly Alexeevich, Pozdeev, Artem Anatolievich, Dyogtev, Dmitry Alexandrovich, Petrov, Dmitry
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container_end_page 3041
container_issue 11
container_start_page 3038
container_title IEEE transactions on plasma science
container_volume 45
creator Shneerson, German Abramovich
Danilin, Kirill Alexandrovich
Nenashev, Alexey Pavlovich
Parfentiev, Anatoly Alexeevich
Pozdeev, Artem Anatolievich
Dyogtev, Dmitry Alexandrovich
Petrov, Dmitry
description The balanced winding displaced in the cavity, the magnet provides the possibility for obtaining the stronger magnet field without enhancing mechanical stresses in the conductors. The model of such a system is the single-turn magnet with an additional triple-thread spiral winding. The equilibrium condition with respect to the radial force takes place at definite values of the axial current and pitch of the turns. In order to decrease the transverse field provoking the azimuthal force, the correction system in the form of cylindrical conductors with slits has been used. The discharging of the end part of the additional winding from the axial force is achieved using the flat concentrators of the flux.
doi_str_mv 10.1109/TPS.2017.2753962
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subjects Additional balanced winding
Conductors
flux concentrators
Force
Magnetic circuits
Magnetic flux
Magnetomechanical effects
nondestructive magnet
Stress
Windings
title Single-Turn Magnet With an Additional Balanced Winding and Flux Concentrators
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