STATOR
20170257001 ยท 2017-09-07
Assignee
Inventors
Cpc classification
H02K3/44
ELECTRICITY
International classification
Abstract
A stator having good electric characteristics is reasonably configured. The stator includes a stator core including an annular core portion centered around a rotational axis of a rotor and a plurality of teeth portions protruding radially from the core portion, a core wire wound around the teeth portions, a resin plate to be superposed on the stator core along the rotational axis, the resin plate defining a hole therethrough along the rotational axis, into which hole an end portion of the coil wire is inserted, and a resin portion in which the stator core, the coil wire and the plate are embedded. The end of the coil wire is directly connected to a bus bar for electric power supply or grounding, with the end of the coil wire being exposed from the resin portion.
Claims
1. A stator comprising: a stator core including an annular core portion centered around a rotational axis of a rotor and a plurality of teeth portions protruding radially from the core portion; a core wire wound around the teeth portions; a resin plate to be superposed on the stator core along the rotational axis, the resin plate defining a hole therethrough along the rotational axis, into which hole an end portion of the coil wire is inserted; and a resin portion in which the stator core, the coil wire and the plate are embedded; wherein the end of the coil wire is directly connected to a bus bar for electric power supply or grounding, with the end of the coil wire being exposed from the resin portion.
2. The stator according to claim 1, wherein: the plate includes a first plate and a second plate placed on the first plate; the first plate defines a first groove portion configured to be connected to the hole of the first plate and to accommodate the coil wire; and the hole of the second plate is communicated to the first groove portion.
3. The stator according to claim 2, wherein the second plate defines a second groove portion which is formed in opposition to the first groove portion and configured to accommodate the coil wire.
4. The stator according to claim 2, wherein the second plate includes a protruding portion which is inserted into the first groove portion, the protruding portion defining a second groove portion for accommodating the coil wire.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DESCRIPTION OF EMBODIMENTS
[0030] Next, a stator relating to this embodiment will be explained with reference to the drawings. In this embodiment, as an example of stator, there will be explained a stator 4 of an electric motor M used in a water pump P for a vehicle configured to circulate cooling water. However, it should be noted that this invention is not limited to the following embodiment, but various modifications are possible in a range not departing from the essential spirit thereof.
[0031] As shown in
[0032] The electric motor M for use in this water pump P comprises a three-phase brushless motor having the rotor 3 rotatable about a rotational axis X and the stator 4 for generating magnetic flux relative to the rotor 3. Incidentally, this electric motor M can be caused to function as a generator by rotating the rotor 3.
[0033] The rotor 3 includes a rotor core 31 formed by superposing a plurality of magnetic steel plates and a plurality of permanent magnets 31a embedded in the rotor core 31. The rotor core 31 and the permanent magnets 31a are insert-molded with resin and integrated with each other. The permanent magnets 31a are comprised of six magnetic poles, thus constituting the electric motor M having 6 poles, three phases, 9 throttles.
[0034] Incidentally, the permanent magnets 31a are not limited to six poles, but can be comprised of an even number of poles more than 2 (two) poles.
[0035] As shown in
[0036] As shown in
[0037] The respective teeth portions 42 extend radially (radial direction) around the rotational axis X and formed at 9 (nine) positions spaced apart from each other equidistantly along the circumferential direction. In the instant embodiment, the outer circumferential face of the core portion 41 comprises a nonagonal shape and the inner circumferential face of the core case 7 fitted along the outer circumferential face of this core portion 41 comprises also a nonagonal shape. Incidentally, the outer circumferential face of the core portion 41 and the inner circumferential face of the core case 7 are not limited to such polygonal shapes, but can be circular shape also, for instance.
[0038] As shown in
[0039] In the instant embodiment, as shown in
[0040] Then, in the case of the stator 4 according to the instant embodiment, as shown in
[0041] As described above, the plate 8 defines therethrough the holes 81 along the rotational axis X for allowing insertion of the ends 45A of the coil wire 45. Thus, as shown in
[0042] As shown in
[0043] Namely, the stator 4 according to the instant embodiment omits any terminal member for establishing electric connection between the coil wire 45 and the bus bar B.
[0044] On the other hand, such omission of terminal member results in greater trouble in inserting the ends 45A of the coil wire 45 into the hole portions Ka of the mold K. However, by providing the plate 8, the assembly can be facilitated. Moreover, since a contact portion between a terminal member and the coil wire 45 and a contact portion between the terminal member and the bus bar B are eliminated, contact resistance can be reduced, thus improving the electric characteristics.
[0045] Next, further embodiments will be explained. As basic configurations thereof are identical to that of the foregoing embodiment, only differences thereof will be explained with reference to the drawings. Incidentally, for readiness of understanding of drawing illustrations, in the following explanation, the same parts names and marks as those employed in the foregoing embodiment will be used in the following explanation.
Further Embodiment 1
[0046] As shown in
[0047] As shown in
[0048] As a result, leakage or discharge of injected resin from the holes 81b of the second plate 8b is prevented. Thus, the arrangement eliminates inconvenience of leaking of resin into the hole portions Ka of the mold K, generating burrs at the ends 45A of the coil wire 45. Therefore, even if the ends 45A of the coil wire 45 exposed from the resin portion 46 of the stator 4 are directly connected to the bus bars B, no deterioration will occur in the electric characteristics.
[0049] Incidentally, as the ends 45A of the coil wire 45 are drawn out of the offset holes 81b of the second plate 8b, the layout of the first groove portions 82a can be determined according to the positions for connection to the bus bars B. Namely, the arrangement of constituting the plate 8 of two parts provides greeter degree of freedom in setting of drawing out positons of the ends 45A of the coil wire 45.
Further Embodiment 2
[0050] This embodiment differs from Further Embodiment 1 in the respect of the shape of the second plate 8b. As shown in
[0051] With the above-described arrangement, in addition to the advantageous function/effect of Further Embodiment 1, as the positioning of the second plate 8b relative to the first plate 8a is effected with fitting the second groove portion 82b to the coil wire 45 exposed from the first groove portions 82a, attachment is facilitated.
Further Embodiment 3
[0052] This embodiment differs from Further Embodiments 1 and 2 in the respect of the shape of the second plate 8b. As shown in
[0053] With the above-described embodiment, in addition to the advantageous function/effect of Further Embodiments 1 and 2, only by inserting the protruding portion 83 having the first groove portion 82a into the first groove portion 82a acting as an accommodation space for the coil wire 45, position fixing of the two members can be completed. Therefore, there is no need to provide the first plate 8a or the second plate 8b with e.g. a position fixing portion separately.
Other Embodiments
[0054] (1) In the foregoing embodiments, the plate 8 is provided in the form of an integrated annular shape or a half-annular shape. However, the plate 8 may be formed independently for each split stator core S. In this case, the size of the plate 8 will be determined in accordance with an amount of withdrawal extension of the ends 45A of the coil wire 45. Thus, material for forming the plate 8 can be saved.
[0055] (2) The stator core S in the foregoing embodiment was described as a split core. Instead, this can be an integral core integrating the core portions 41. In this case, the core case 7 can be omitted and the insulator 44 encasing the core portion 41 can be formed to protrude in the rotational axis X direction, and the plate 8 can be placed in abutment against the inner circumferential face of this insulator 44.
[0056] (3) In the foregoing embodiment, the electric motor M is of the inner rotor type in which the rotor 3 is disposed on the inner side of the stator 4. Alternatively, it may be of an outer rotor type in which the rotor 3 is disposed on the outer side of the stator 4. In the case of such outer rotor type, the stator 4 will include an annular core portion 41 centered around the rotational axis X and a plurality of teeth portions 42 protruding radially outwards from the core portion 41. In this outer rotor type electric motor M too, the above-described function/effect can be expected to be obtained by providing the plate 8 to be placed on the stator core S along the rotational axis X.
[0057] (4) The machine in which the electric motor M in the foregoing embodiment is used is not limited to the water pump P for circulating cooling water for an engine, but may be a pump for circulating engine oil or even a machine for use in other applications than a vehicle. Further, the driving mode of the electric motor M is not limited to the three-phase brushless motor generating alternating magnetic field. Instead a brush motor may be employed.
INDUSTRIAL APPLICABILITY
[0058] The stator according to the present invention is applicable to an electric motor for use in various machines such as a vehicle-mounted water pump.
REFERENCE SIGNS LIST
[0059] 3: rotor [0060] 4: stator [0061] 41: core portion [0062] 42: teeth portion [0063] 43: flange portion [0064] 45: coil wire [0065] 45A: end [0066] 46: resin portion [0067] 8: plate [0068] 81: hole [0069] 8a: first plate [0070] 81a: hole [0071] 82a: first groove portion [0072] 8b: second plate [0073] 81b: hole [0074] 82b: second groove portion [0075] 83: protruding portion [0076] 83a: second groove portion [0077] B: bus bar [0078] S: stator core [0079] X: rotational axis