The present invention relates to a stator and a rotating electric machine, and more particularly to a stator including a plurality of stator coils and a busbar for connecting the plurality of stator coils to one another and a rotating electric machine including the stator.
A stator including a plurality of stator coils and a busbar for connecting the plurality of stator coils to one another has been conventionally known.
For example, Japanese Patent Laying-Open No. 2005-137174 (Patent Document 1) describes a stator structure including stator coils wound around and attached to respective teeth being connected to one another by means of a transition member projecting in an axial direction with respect to the coils, in which an end portion on an outer circumferential side of one coil and an end portion on an inner circumferential side of another coil are connected to each other.
Japanese Patent Laying-Open No. 2005-51999 (Patent Document 2) and Japanese Patent Laying-Open No. 2006-333685 (Patent Document 3) describe connecting a plurality of stator coils to one another by means of busbars provided radially outward relative to the coils.
In the stator of Patent Document 1, a transition line for connecting the plurality of stator coils projects in the axial direction with respect to the stator coils, which increases the stator in size in the axial direction.
In the stators of Patent Documents 2 and 3, the busbar varies in shape from phase to phase, which increases the number of components.
The present invention was made in view of the above problems, and an object thereof is to provide a stator which is not increased in size and has a smaller number of components, and a rotating electric machine including the stator.
In one aspect, a stator according to the present invention includes an annular stator core having a plurality of tooth portions, a plurality of stator coils wound around the plurality of tooth portions, respectively, and a busbar provided radially outward in the stator core relative to the stator coils, for electrically connecting the plurality of stator coils to one another, in which a distance between one end of the busbar and a center of the annular stator core and a distance between the other end of the busbar and the center of the annular stator core are different from each other.
In another aspect, a stator according to the present invention includes an annular stator core having a plurality of tooth portions, a plurality of first-phase stator coils wound around the plurality of tooth portions, respectively, a plurality of second-phase stator coils wound around the plurality of tooth portions, respectively, and supplied with a current out of phase with a current through the first-phase stator coils, a first busbar provided radially outward in the stator core relative to the first-phase stator coils, for electrically connecting the plurality of first-phase stator coils to one another, and a second busbar provided radially outward in the stator core relative to the second-phase stator coils, for electrically connecting the plurality of second-phase stator coils to one another, in which a distance between an end portion of the first busbar and a center of the annular stator core and a distance between an end portion of the second busbar and the center of the annular stator core are equal to each other.
In yet another aspect, a stator according to the present invention includes an annular stator core having a plurality of tooth portions, a plurality of stator coils wound around the plurality of tooth portions, respectively, and a plurality of busbars provided radially outward in the stator core relative to the stator coils, for electrically connecting the plurality of stator coils to one another, in which the plurality of busbars are arranged like a windmill on an axial end surface of the stator core.
In any of the aspects, the above structure can suppress increase in size of the stator, and reduce the number of components of the stator.
Preferably, in the above stator, a surface of the busbar is covered with insulating coating. As such, insulation of the busbar can be readily ensured, which eliminates the need for another component for insulation.
A rotating electric machine according to the present invention includes the stator described above. A rotating electric machine in which increase in size of a stator is suppressed is thus provided.
Two or more of the aforementioned features may be combined with one another as appropriate.
According to the present invention, increase in size of a stator can be suppressed, and the number of components of the stator can be reduced.
1 rotating electric machine; 100 stator; 110 stator core; 111 tooth portion; 120 stator coil; 120U U-phase coil; 120V V-phase coil; 120W W-phase coil; 121, 131 terminal portion; 130 busbar; 130U U-phase busbar; 130V V-phase busbar; 130W W-phase busbar; 140 busbar accommodating body; 150 insulator; 200 rotor.
Embodiments of the present invention will be described below. It is noted that the same or corresponding parts have the same reference characters, and description thereof may not be repeated.
If any reference to a number, an amount and the like is made in embodiments described below, the scope of the present invention is not necessarily limited to that number, amount and the like unless otherwise specified. Further, in the following embodiments, each constituent element is not necessarily essential to the present invention unless otherwise specified. Furthermore, if there are a plurality of embodiments below, it is originally intended to combine features of the embodiments to one another as appropriate unless otherwise specified.
Stator core 110 is structured by stacking magnetic bodies such as electromagnetic steel plates. Stator core 110 includes a plurality of tooth portions 111 and slot portions formed among the plurality of tooth portions 111.
Stator coil 120 is wound around tooth portion 111 such that stator coil 120 fits in the slot portion of stator core 110. Stator coil 120 includes a U-phase coil 120U, a V-phase coil 120V, and a W-phase coil 130W. U-phase coil 120U, V-phase coil 120V, and W-phase coil 120W are arranged to be aligned repeatedly in this order at regular intervals in a circumferential direction of stator 100. In the example of
As shown in
Busbar 130 includes a U-phase busbar 130U, a V-phase busbar 130V, and a W-phase busbar 130W. U-phase coils 120U are electrically connected in series by U-phase busbar 130U, V-phase coils 120V are electrically connected in series by V-phase busbar 130V, and W-phase coils 120W are electrically connected in series by W-phase busbar 130W.
As shown in
When winding and attaching stator coil 120 around stator core 110, first, stator coil 120 is wound around insulator 150, to form a cassette coil having a terminal portion 121 as shown in
Terminal portions 131 provided at both end portions of busbar 130 and terminal portions 121 of stator coil 120 are fastened to one another by a fastening member such as a bolt. In this manner, the plurality of stator coils 120 are electrically connected to one another.
By arranging busbar 130 radially outward relative to stator coil 120 as described above, busbar 130 does not need to project in the axial direction with respect to stator coil 120 in electrically connecting the plurality of stator coils 120 to one another by busbar 130, thereby suppressing increase in size of stator 100 in the axial direction.
According to stator 100 in the present embodiment, increase in size of stator 100 can be suppressed, and the number of components of stator 100 can be reduced.
The above description is summarized as follows. That is, stator 100 according to the present embodiment includes annular stator core 110 having the plurality of tooth portions 111; U-phase coil 120U (first-phase stator coil), V-phase coil 120V (second-phase stator coil), and W-phase coil 120W (third-phase stator coil) as a plurality of “stator coils” wound around the plurality of tooth portions 111, respectively; and U-phase busbar 130U (first busbar), V-phase busbar 130V (second busbar), and W-phase busbar 130W (third busbar) provided radially outward in stator core 110 relative to U-phase coil 120U, V-phase coil 120V, and W-phase coil 120W, for electrically connecting the plurality of U-phase coils 120U, V-phase coils 120V, and W-phase coils 120W to one another. U-phase coil 120U, V-phase coil 120V, and W-phase coil 120W are supplied with AC currents out of phase with one another, respectively.
Here, a distance between one end of U-phase busbar 130U and center O of annular stator core 110 and a distance between the other end of U-phase busbar 130U and center O of annular stator core 110 are different from each other, a distance between one end of V-phase busbar 130V and center O of annular stator core 110 and a distance between the other end of V-phase busbar 130V and center O of annular stator core 110 are different from each other, and a distance between one end of W-phase busbar 130W and center O of annular stator core 110 and a distance between the other end of W-phase busbar 130W and center O of annular stator core 110 are different from each other.
Further, a distance between an end portion of U-phase busbar 130U and center O of annular stator core 110 and a distance between an end portion of V-phase busbar 130V and center O of annular stator core 110 are equal to each other, the distance between the end portion of V-phase busbar 130V and center O of annular stator core 110 and a distance between an end portion of W-phase busbar 130W and center O of annular stator core 110 are equal to each other, and the distance between the end portion of W-phase busbar 130W and center O of annular stator core 110 and the distance between the end portion of U-phase busbar 130U and center O of annular stator core 110 are equal to each other.
While the embodiments of the present invention have been described as above, it should be understood that the embodiments disclosed herein are illustrative and non-restrictive in every respect. The scope of the present invention is defined by the terms of the claims, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.
The present invention is applicable, for example, to a stator including a plurality of stator coils and a busbar for connecting the plurality of stator coils to one another and a rotating electric machine including the stator.
Number | Date | Country | Kind |
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2007-272428 | Oct 2007 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2008/068643 | 10/15/2008 | WO | 00 | 4/16/2010 |