IP Library Granted Patent US 7,330,341
Granted Patent B2
US 7,330,341 · App. 11/540,572 · Granted Feb 12, 2008

Superconducting magnet coil system with quench protection

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Quick Facts
Patent No.
US 7,330,341
App. No.
11/540,572
Granted
Feb 12, 2008
Kind
B2
Abstract

A superconducting magnet coil system comprising a main field coil which is formed from series-connected sections, wherein the conductors of the radially inner sections contain a first superconducting material and have first electric voltage insulation, the conductors of the radially outer sections comprise a second superconducting material and are provided with second electric voltage insulation, wherein the first superconducting material has a higher critical magnetic field than the second superconducting material, and the first voltage insulation has a smaller dielectric strength than the second voltage insulation, and a shielding coil which is connected in series with the main field coil, radially surrounds the main field coil, and comprises conductors of the second superconducting material having the second electric voltage insulation, wherein the main field coil and the shielding coil are superconductingly short-circuited during operation and are protected through several ohmic resistances and/or diodes in case of a quench, is characterized in that the inner sections are protected by at least one ohmic resistance and the outer sections are protected, together with the shielding coil, by one single ohmic resistance.

Claims (12)

1. A superconducting magnet coil system comprising:

a main field coil formed from radially nested sections which are connected in series and which comprise conductors, said conductors of radially inner sections of said main coil comprising a first superconducting material and having a first electric voltage insulation, conductors of radially outer sections of said main coil comprising a second superconducting material having a second electric voltage insulation, wherein said first superconducting material has a higher critical magnetic field than said second superconducting material, said first voltage insulation having at least areas of smaller dielectric strength than said second voltage insulation;

a shielding coil connected in series with and radially surrounding said main field coil, said shielding coil having conductors which contain said second superconducting material and which are surrounded by said second electric voltage insulation, wherein said main field coil and said shielding coil are superconductingly short-circuited during operation;

at least one ohmic resistance and/or diode connected in parallel with said radially inner sections of said main field coil for quench protection thereof; and

one single further ohmic resistance and/or one single diode circuited for quench protection of said radially outer sections of said main field coil and of said shielding coil.

2. The superconducting magnet coil system of claim 1 , wherein said first superconducting material contains Nb 3 Sn and said first voltage insulation comprises a glass fiber or ceramic fiber insulation.

3. The superconducting magnet coil system of claim 1 , wherein said first superconducting material comprises a high-temperature superconductor and/or Nb 3 Al, and said first voltage insulation comprises a glass fiber or ceramic fiber insulation.

4. The superconducting magnet coil system of claim 1 , wherein said second superconducting material contains NbTi and said second voltage insulation comprises enamel insulation.

5. The superconducting magnet coil system of claim 1 , wherein an overall dipole moment of said radially inner sections of said main field coil is smaller than 15% of an overall dipole moment of all sections of said main field coil.

6. The superconducting magnet coil system of claim 1 , wherein each individual radially inner section of said main field coil is protected by an ohmic resistance and/or a diode.

7. The superconducting magnet coil system of claim 1 , wherein the magnet coil system is an NMR magnet coil system.

8. The superconducting magnet coil system of claim 1 , wherein the magnet coil system generates magnetic field strengths of more than 9 Tesla or of more than 17 Tesla.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 17, 2024
From: BRUKER BIOSPIN GMBH
To: BRUKER BIOSPIN GMBH & CO. KG
Reel/Frame 067767/0336 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2006
From: FRANTZ, WOLFGANG
To: BRUKER BIOSPIN GMBH
Reel/Frame 018386/0523 →