Rotating electric motor and internal combustion engine supercharger
View Patent ↗Teeth-shaped portions 11 b of a magnet 11 are formed in such a way that a part of the plane of projection of each of the teeth-shaped portions protrudes in a circumferential direction with respect to that of one of teeth 8 b and 9 b which is viewed from an axial direction of a first stator core 8 and a second stator core 9.
1. A rotating electric motor comprising:
a frame;
a rotor that is fixed to a rotating shaft rotatably supported by said frame, and that is rotatably disposed within said frame; and
a stator including two stator cores of the same shape that are held by said frame and that are coaxially disposed in such a way as to enclose said rotor, a magnet for field magnetomotive force generation that is sandwiched between said two stator cores and that excites said rotor, and a drive coil for torque generation that is wound around said two stator cores and that causes said rotor to generate a rotary torque, wherein
each of said stator cores has a disk-shaped core back and teeth protruding inwardly in a radial direction from an inner surface of said core back and constructing slots that are open toward an inner circumference thereof, said magnet for field magnetomotive force generation has a core-back-shaped portion of the same shape as said core backs of said stator cores and teeth-shaped portions of the same shape as said teeth, and a part of a plane of projection of each of said teeth-shaped portions of said magnet for field magnetomotive force generation protrudes in a circumferential direction with respect to that of one of said teeth which is viewed from an axial direction of said stator cores.
2. The rotating electric motor according to claim 1 , wherein a width in a circumferential direction of each of said teeth-shaped portions of said magnet for field magnetomotive force generation is set to be larger than that of each of said teeth of said stator cores.
3. The rotating electric motor according to claim 2 , wherein the part of said magnet for field magnetomotive force generation protruding with respect to said teeth is extended in the circumferential direction, and is formed in a ring shape enclosing said rotor.
4. The rotating electric motor according to claim 2 , wherein the part of said magnet for field magnetomotive force generation protruding with respect to said teeth is extended in an axial direction up to said slots of each of said two stator cores.
5. An internal combustion engine supercharger that rotationally drives a rotary wing of a compressor by using the rotating electric motor according to claim 1 .