ROTATING ELECTRICAL MACHINE IN WHICH PERMANENT MAGNET IS USED
A permanent magnet type rotary electric machine has a stator(12), a rotor(14) which is rotatably provided inside the stator(12), and permanent magnets(26) arranged in a rotor core(24) of the rotor(14). An angle ¸ between a straight line(L1) connecting the center of the rotor(14) to a middle position...
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creator | TAKEUCHI, Katsutoku KAWAKAMI, Masayuki HASHIBA, Yutaka MISU, Daisuke MATSUSHITA, Makoto YAMAMOTO, Yuji ARAKI, Takashi KATSURAYAMA, Hisami TAKAHASHI, Norio |
description | A permanent magnet type rotary electric machine has a stator(12), a rotor(14) which is rotatably provided inside the stator(12), and permanent magnets(26) arranged in a rotor core(24) of the rotor(14). An angle ¸ between a straight line(L1) connecting the center of the rotor(14) to a middle position between two permanent magnets(26) arranged in the V shape, and a straight line(L2) connecting the center of the rotor(14) to an outer circumferential top(M1) of one of the permanent magnets(26) has the relation: 0.65 |
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An angle ¸ between a straight line(L1) connecting the center of the rotor(14) to a middle position between two permanent magnets(26) arranged in the V shape, and a straight line(L2) connecting the center of the rotor(14) to an outer circumferential top(M1) of one of the permanent magnets(26) has the relation: 0.65<(=¸/(180/P))<0.80 in which P is the number of poles in the rotor(14). When a rear depth of a slot(20) of the stator core(16) is D, and a burying depth of the permanent magnet(26) in the radial direction of the rotor core (24)is t, D/t=A has the relation: 0.8<A<1.1. 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An angle ¸ between a straight line(L1) connecting the center of the rotor(14) to a middle position between two permanent magnets(26) arranged in the V shape, and a straight line(L2) connecting the center of the rotor(14) to an outer circumferential top(M1) of one of the permanent magnets(26) has the relation: 0.65<(=¸/(180/P))<0.80 in which P is the number of poles in the rotor(14). When a rear depth of a slot(20) of the stator core(16) is D, and a burying depth of the permanent magnet(26) in the radial direction of the rotor core (24)is t, D/t=A has the relation: 0.8<A<1.1. 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An angle ¸ between a straight line(L1) connecting the center of the rotor(14) to a middle position between two permanent magnets(26) arranged in the V shape, and a straight line(L2) connecting the center of the rotor(14) to an outer circumferential top(M1) of one of the permanent magnets(26) has the relation: 0.65<(=¸/(180/P))<0.80 in which P is the number of poles in the rotor(14). When a rear depth of a slot(20) of the stator core(16) is D, and a burying depth of the permanent magnet(26) in the radial direction of the rotor core (24)is t, D/t=A has the relation: 0.8<A<1.1. Elected Figure: FIG.1</abstract><oa>free_for_read</oa></addata></record> |
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subjects | CONVERSION OR DISTRIBUTION OF ELECTRIC POWER DYNAMO-ELECTRIC MACHINES ELECTRICITY GENERATION |
title | ROTATING ELECTRICAL MACHINE IN WHICH PERMANENT MAGNET IS USED |
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