Method and Arrangement for Adjusting the Magnetization of a Permanent Magnet Machine
20180183287 ยท 2018-06-28
Inventors
Cpc classification
H02K2201/03
ELECTRICITY
H02K21/042
ELECTRICITY
H02K2213/09
ELECTRICITY
International classification
Abstract
The invention relates to a method and to an arrangement for adjusting the magnetization of a permanent magnet machine, i.e. the magnetic flux induced by permanent magnets of a rotor in a stator, i.e. the air gap flux. According to the invention, the air gap flux is adjusted by adjusting the leakage flux of the permanent magnet.
Claims
1. A method for adjusting the magnetization of a permanent magnet machine, i.e. the magnetic flux, or air gap flux, induced by permanent magnets (2) of a rotor (1) in a stator (3), characterized in that the air gap flux is adjusted by adjusting the leakage flux of the permanent magnet (2).
2. The method according to claim 1, characterized in that the leakage flux is adjusted by adjusting an electromagnet disposed in the leakage flux circuit.
3. The method according to claim 1, characterized in that the leakage flux of the permanent magnets (2) is adjusted by adjusting the reluctance of the leakage flux circuit of the rotor (1).
4. The method according to claim 1, characterized in that the leakage flux is adjusted by changing the mechanical structure of the leakage flux circuit.
5. An arrangement for adjusting the magnetization of a rotor (1) of a permanent magnet machine, in which rotor permanent magnets (2) are disposed inside the rotor body in annular V-formation, first ends (4) of the permanent magnets being close to the surface of the rotor and second ends (5) of the permanent magnets being closer to the central shaft of the rotor in such a way that the second ends of the permanent magnets are disposed in heat transfer contact with an air channel (6) that extends in the axial direction through the rotor, characterized in that the air channel (6) comprises an adjusting arrangement for adjusting the leakage flux of the permanent magnet (2) that circulates the air channel.
6. The arrangement according to claim 5, characterized in that the air channel (6) comprises a ferromagnetic partition (7) in the radial direction of the rotor (1) that divides the air channel into two channel sections (8,9), the adjusting arrangement being provided at the partition.
7. The arrangement according to claim 6, characterized in that the adjusting arrangement comprises an adjustment member (10) which is turnable in the area of the partition (7) for adjusting the reluctance of the partition.
8. The arrangement according to claim 6, characterized in that the adjusting arrangement comprises an adjustment member which is movable in the axial direction of the rotor in the area of the partition (7) for adjusting the reluctance of the partition.
9. The arrangement according to claim 6, characterized in that the adjusting arrangement comprises an electromagnet (11) disposed in the area of the air channel (6).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The invention will now be described in detail with reference to the accompanying drawings, in which
[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF THE INVENTION
[0021]
[0022] Also, the second ends 5 of the pair of permanent magnets are disposed in direct heat transfer communication with an air channel 6 that extends in the axial direction through the laminar structure of the rotor. The air channel 6 is formed by two channel sections 8 and 9, and between the channel sections in the radial direction of the rotor 1 there is a partition 7. The partition 7 is not one-piece, but comprises an adjustment member 10 that is turnable relative to the rest of the partition. In another embodiment of the invention this adjustment member is movable in the axial direction, which brings the same result, i.e. adjustment of the reluctance of the leakage flux circuit. The adjustment member 10 extends over the entire axial length of the rotor, its width is approximately equal to the width of the partition and, in the radial direction, its length is greater than its width. Thus, in the position of
[0023] The main flux of the permanent magnet 2 passes through the permanent magnet and the stator 3, and the leakage flux circulates around the channel sections 8 and 9 through the partition 7 inside the rotor 1. In the machine according to the invention, the main flux of the machine can be simply adjusted by adjusting the leakage flux inside the rotor with the above described arrangement. I.e. according to the invention, when the reluctance of the leakage flux circuit is increased, the leakage flux is reduced and accordingly the main flux is amplified. In other words,
[0024]
[0025] The invention has been described above by way of example with reference to the accompanying drawings, different embodiments of the invention being possible within the scope defined by the claims.