Patent · US2016268856A1 · A1 · US
Embedded-permanent-magnet electric motor
- (11) Publication number
- US2016268856A1
- (21) Application number
- 15/032,656
- (22) Filing date
- 2014-12-04
- (30) Priority date
- 2013-12-09
- (43) Publication date
- 2016-09-15
- (52) CPC
- H02K Dynamo-electric machines: 1/276, 1/14, 2213/03
- (73) Assignee
- MITSUBISHI ELECTRIC CORP
- (54) Title
- Embedded-permanent-magnet electric motor
- (57) Abstract
Provided is an interior permanent magnet motor including: a stator; and a rotor, the rotor including separated permanent magnets for one magnetic pole, in which: a rotor core includes the same number of separated magnet insertion holes as that of the plurality of permanent magnets for one magnetic pole; bridges are formed between respective adjacent ones of the magnet insertion holes in each magnetic pole; each of the bridges includes a pair of parallel linear portions and two pairs of curved portions; under a state in which the permanent magnets are inserted into the magnet insertion holes, the pair of linear portions are in contact with edge surfaces of the permanent magnets; the pair of curved portions are connected to ends of the linear portions; and an interval between the pair of curved portions becomes larger as the interval becomes away from the linear portions.
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Claims (1)
- An interior permanent magnet motor, comprising: a stator; and a rotor rotatably supported to face the stator, the rotor comprising a plurality of separated permanent magnets for one magnetic pole, wherein a rotor core of the rotor comprises a plurality of the same number of separated magnet insertion holes as a number of the plurality of permanent magnets for one magnetic pole, wherein bridges are formed between respective adjacent ones of the magnet insertion holes in each magnetic pole, wherein each of the bridges comprises a pair of parallel linear portions and two pairs of curved portions, wherein, under a state in which the plurality of permanent magnets are inserted into the plurality of corresponding magnet insertion holes, each of the pair of linear portions is in contact with a corresponding edge surface of the corresponding permanent magnet in an arrayed direction, wherein the two pairs of curved portions are connected to corresponding ends of the linear portions in an extending direction of the linear portions and an interval between the pair of corresponding curved portions becomes larger as the interval becomes away from the linear portions, and wherein an end point Y of the return portion is located at a position closer to the linear portion than a protruding end Z of the bridge when viewed in a bridge width direction. 2. An interior permanent magnet motor according to claim 1, wherein one end side of a turn portion is connected to a side of each of the two pairs of curved portions, which is a side opposite to the corresponding linear portion, one end side of the return portion is connected to another end side of the turn portion, and another end side of the return portion is connected to a corresponding magnet holding portion in the corresponding magnet insertion hole. 3. An interior permanent magnet motor according to claim 2, wherein an expression of “a radius of curvature R 1 of the curved portion>a radius of curvature R 2 of the turn portion” is satisfied. 4. (canceled) 5. An interior permanent magnet motor according to claim 2, wherein curvatures of the turn portion, the return portion, and the curved portion become smaller in the stated order. 6. An interior permanent magnet motor according to claim 5, wherein the turn portion, the return portion, and the curved portion are formed along a locus obtained by rotationally moving in a fan-like form a half circle having an interval between the curved portion and the return portion as a diameter so as to move away from the linear portion, and wherein a rotational movement angle θ of the half circle is set within an angle range in which a stress σ on the end of the linear portion is lower than an allowable value σp in a relational line between the rotational movement angle θ and the stress σ. 7. An interior permanent magnet motor according to claim 1, wherein a material having a magnetic permeability at least higher than a magnetic permeability of air is filled into the air gap produced between the curved portion of the bridge and the permanent magnet.
Citations (3)
- JP2002136008A
- US2013026872A1
- US2014217859A1
Record as JSON
{
"publication_number": "US2016268856A1",
"country": "US",
"kind": "A1",
"title": "Embedded-permanent-magnet electric motor",
"abstract": "Provided is an interior permanent magnet motor including: a stator; and a rotor, the rotor including separated permanent magnets for one magnetic pole, in which: a rotor core includes the same number of separated magnet insertion holes as that of the plurality of permanent magnets for one magnetic pole; bridges are formed between respective adjacent ones of the magnet insertion holes in each magnetic pole; each of the bridges includes a pair of parallel linear portions and two pairs of curved portions; under a state in which the permanent magnets are inserted into the magnet insertion holes, the pair of linear portions are in contact with edge surfaces of the permanent magnets; the pair of curved portions are connected to ends of the linear portions; and an interval between the pair of curved portions becomes larger as the interval becomes away from the linear portions.",
"claims": [
"1. An interior permanent magnet motor, comprising: a stator; and a rotor rotatably supported to face the stator, the rotor comprising a plurality of separated permanent magnets for one magnetic pole, wherein a rotor core of the rotor comprises a plurality of the same number of separated magnet insertion holes as a number of the plurality of permanent magnets for one magnetic pole, wherein bridges are formed between respective adjacent ones of the magnet insertion holes in each magnetic pole, wherein each of the bridges comprises a pair of parallel linear portions and two pairs of curved portions, wherein, under a state in which the plurality of permanent magnets are inserted into the plurality of corresponding magnet insertion holes, each of the pair of linear portions is in contact with a corresponding edge surface of the corresponding permanent magnet in an arrayed direction, wherein the two pairs of curved portions are connected to corresponding ends of the linear portions in an extending direction of the linear portions and an interval between the pair of corresponding curved portions becomes larger as the interval becomes away from the linear portions, and wherein an end point Y of the return portion is located at a position closer to the linear portion than a protruding end Z of the bridge when viewed in a bridge width direction. 2. An interior permanent magnet motor according to claim 1, wherein one end side of a turn portion is connected to a side of each of the two pairs of curved portions, which is a side opposite to the corresponding linear portion, one end side of the return portion is connected to another end side of the turn portion, and another end side of the return portion is connected to a corresponding magnet holding portion in the corresponding magnet insertion hole. 3. An interior permanent magnet motor according to claim 2, wherein an expression of “a radius of curvature R 1 of the curved portion>a radius of curvature R 2 of the turn portion” is satisfied. 4. (canceled) 5. An interior permanent magnet motor according to claim 2, wherein curvatures of the turn portion, the return portion, and the curved portion become smaller in the stated order. 6. An interior permanent magnet motor according to claim 5, wherein the turn portion, the return portion, and the curved portion are formed along a locus obtained by rotationally moving in a fan-like form a half circle having an interval between the curved portion and the return portion as a diameter so as to move away from the linear portion, and wherein a rotational movement angle θ of the half circle is set within an angle range in which a stress σ on the end of the linear portion is lower than an allowable value σp in a relational line between the rotational movement angle θ and the stress σ. 7. An interior permanent magnet motor according to claim 1, wherein a material having a magnetic permeability at least higher than a magnetic permeability of air is filled into the air gap produced between the curved portion of the bridge and the permanent magnet."
],
"cpc": [
"H02K 1/276",
"H02K 1/14",
"H02K 2213/03"
],
"assignees": [
"MITSUBISHI ELECTRIC CORP"
],
"filing_date": "2014-12-04",
"publication_date": "2016-09-15",
"priority_date": "2013-12-09",
"application_number": "US-201415032656-A",
"family_id": "53370726",
"citations": [
"JP2002136008A",
"US2013026872A1",
"US2014217859A1"
]
}
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