IP Library Patent Application 11767278
Patent Application
App. No. 11/767,278

Method for Inductive Heating of a Workpiece

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Patent No.
US None
App. No.
11/767,278
Abstract

A method for inductive heating of an electrically conducting workpiece, by rotating the workpiece in a magnetic field of a direct-current carrying coil arrangement comprising superconductive windings about a rotation axis that forms an angle with the principal axis of the magnetic field, allows temperatures that differ from each other along the workpiece to be obtained when the flux density of the magnetic field permeating the workpiece is set differently along the rotation axis.

Claims (23)

1 . A method to inductively heat an electrically conducting workpiece, the method comprising:

providing a magnetic field of a direct-current carrying coil arrangement including superconductive windings and a magnetic short-circuit disposed in a partial region of the magnetic field; and

rotating the workpiece in the magnetic field about a rotation axis that forms an angle with a principal axis of the magnetic field and in which a flux density of the magnetic field permeating the workpiece along the rotation axis is set differently;

wherein the flux density that is different along the rotation axis is generated via the magnetic short-circuit.

2 . A method to inductively heat an electrically conducting workpiece, the method comprising:

providing a magnetic field of a direct-current carrying coil arrangement comprising superconductive windings and an additional coil; and

rotating the workpiece in the magnetic field about a rotation axis that forms an angle with the principal axis of the magnetic field and in which a flux density of the magnetic field permeating the workpiece along the rotation axis is set differently;

wherein the flux density that is different along the rotation axis is generated via the additional coil.

3 . The method according to claim 2 , wherein the additional coil is arranged parallel to the axis of the superconducting coil arrangement.

4 . The method according to claim 2 , wherein the additional coil surrounds the workpiece concentrically in a partial region of the magnetic field and is arranged on the same axis as the rotation axis.

5 . A method to inductively heat an electrically conducting workpiece, the method comprising:

providing a magnetic field of a direct-current carrying coil arrangement comprising superconductive windings and a ferromagnetic yoke surrounding the outside of the coil arrangement; and

rotating the workpiece in the magnetic field about a rotation axis that forms an angle with the principal axis of the magnetic field and in which a flux density of the magnetic field permeating the workpiece along the rotation axis is set differently;

wherein the different flux density along the rotation axis is generated via the ferromagnetic yoke.

6 . The method according to claim 5 , wherein the yoke is configured similarly to a torus that is open on the inside.

7 . The method according to claim 5 , wherein the yoke includes at least one pole-piece disposed on each of both sides of the rotation axis, the yoke having a cross-section shape selected from the group including: an open circular shape, a closed circular shape or a C-shape.

8 . The method according to claim 7 , wherein the superconducting windings, of the coil arrangement that generates the magnetic field, are disposed on each one of the pole-pieces.

9 . The method according to claim 7 , wherein the different flux density along the rotation axis is generated via changing a spacing of pole-faces of the pole-pieces along the rotation axis.

10 . A method to inductively heat an electrically conducting workpiece, the method comprising:

providing a magnetic field of a direct-current carrying coil arrangement comprising superconductive windings; and

rotating the workpiece in the magnetic field about a rotation axis that forms an angle with the principal axis of the magnetic field and in which a flux density of the magnetic field permeating the workpiece along the rotation axis is set differently;

wherein the different flux density along the rotation axis is set via changing the angle formed by the rotation axis and the principal axis of the magnetic field.

11 . The method according to claim 10 , wherein the angle formed by the rotation axis and the principal axis of the magnetic field is set to a value between about 70° and about 88°.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE TO CORRECT THE SUPPORTING LEGAL DOCUMENT PREVIOUSLY RECORDED ON REEL 021564 FRAME 0046. ASSIGNOR(S) HEREBY CONFIRMS THE ATTACHMENT. Recorded Nov 17, 2008
From: TRITHOR GMBH
To: ZENERGY POWER GMBH
Reel/Frame 021841/0578 →
CHANGE OF NAME Recorded Sep 19, 2008
From: TRITHOR GMBH
To: ZENERGY POWER GMBH
Reel/Frame 021564/0046 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2007
From: WIEZORECK, JAN; BUHRER, CARSTEN
To: TRITHOR GMBH
Reel/Frame 019792/0084 →