X-ray apparatus
An x-ray apparatus includes an x-ray emitter having an x-ray tube, a rotary anode disposed in the x-ray tube, and a drive for the rotary anode. The drive includes a reluctance motor having a stator disposed outside the x-ray tube and a rotor disposed inside the x-ray tube. The rotor is mechanically connected to the rotary anode.
1. An x-ray apparatus comprising:
an x-ray emitter comprising:
an x-ray tube configured to generate an electron beam;
a rotary anode disposed in the x-ray tube, wherein the x-ray tube is configured to generate the electron beam, such that the electron beam intersects the rotary anode; and
a drive for the rotary anode,
wherein the drive comprises a reluctance motor having a stator disposed outside the x-ray tube, and a rotor disposed inside the x-ray tube, the rotor being mechanically connected to the rotary anode; and
wherein an axis of rotation of the rotary anode is oblique to a direction of the electron beam.
2. The x-ray apparatus as claimed in claim 1 , wherein the stator is configured in the form of a ring and encloses the rotor around the entire circumference of the rotor.
3. The x-ray apparatus as claimed in claim 2 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
4. The x-ray apparatus as claimed in claim 3 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
5. The x-ray apparatus as claimed in claim 2 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
6. The x-ray apparatus as claimed in claim 1 , wherein the stator is configured as at least one circle segment and surrounds the rotor along the at least one circle segment.
7. The x-ray apparatus as claimed in claim 6 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
8. The x-ray apparatus as claimed in claim 7 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
9. The x-ray apparatus as claimed in claim 6 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
10. The x-ray apparatus as claimed in claim 1 , wherein the stator and the rotor are configured in the form of disks and are spaced apart from each other in a direction of an axis of rotation.
11. The x-ray apparatus as claimed in claim 10 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
12. The x-ray apparatus as claimed in claim 10 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
13. The x-ray apparatus as claimed in claim 1 , wherein the stator is disposed in the x-ray apparatus but outside the x-ray emitter.
14. The x-ray apparatus as claimed in claim 13 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
15. The x-ray apparatus as claimed in claim 13 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.
16. The x-ray apparatus as claimed in claim 1 , wherein the axis of rotation is inclined such that the electron beam strikes an end face side of the rotary anode pointing radially outwards.
17. The x-ray apparatus as claimed in claim 16 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
18. The x-ray apparatus as claimed in claim 1 , wherein the rotary anode is moveable within a speed range of 100 Hz to 200 Hz.
19. The x-ray apparatus as claimed in claim 18 wherein the axis of rotation is inclined such that the electron beam is configured to strike an end face side of the rotary anode pointing radially outwards.