Pursuant to 35 U.S.C. ยง119 and the Paris Convention Treaty, this application claims the benefit of Chinese Patent Application No. 201210505002.7 filed Nov. 30, 2012, the contents of which are incorporated herein by reference. Inquiries from the public to applicants or assignees concerning this document or the related applications should be directed to: Matthias Scholl P.C., Attn.: Dr. Matthias Scholl Esq., 14781 Memorial Drive, Suite 1319, Houston, Tex. 77079.
1. Field of the Invention
The invention relates to a stator for a brushless external-rotor motor and manufacturing method thereof.
2. Description of the Related Art
The traditional stator core component for a brushless external-rotor motor is generally formed by overlapping silicon-steel sheets and then winding the overlapped silicon-steel sheets. The technology has the defects of slow winding, difficulty in embedding and more waste in cores, thus the cost is relatively high, the production efficiency is low, the integrity is poor, and the protection and insulation to windings are also relatively poorer.
In view of the above-described problems, it is one objective of the invention to provide a stator for a brushless external-rotor motor. The stator for a brushless external-rotor motor has the advantages of easiness in winding, saved material, reduced cost, good integrity and better protection and insulation to windings.
To achieve the above objective, in accordance with one embodiment of the invention, there is provided a stator for a brushless external-rotor motor, comprising: a stator core, the stator core comprising a yoke part and a tooth part which are separated, the tooth part comprising a clamping part; a winding; and an end insulator. The tooth part is formed by overlapping a plurality of silicon-steel sheets. The end insulator is sleeved on the tooth part. The winding is wound on the end insulator. The yoke part is formed by molding permeability magnetic material and comprises a mounting hole in a center. A plurality of lug bosses protrudes at intervals on an outer side of the yoke par. A clamping groove is formed between two connected lug bosses. The clamping part of the tooth part is nested in the clamping groove.
In a class of this embodiment, the stator core, the winding, and the end insulator are clad with an injection mold.
In a class of this embodiment, the permeability magnetic material adopts sendust material.
In a class of this embodiment, the clamping part is a dovetail lug boss, and the clamping groove is a dovetail groove.
In a class of this embodiment, the injection mold comprises an upper end plate and a lower end plate which are positioned at two ends of the stator core respectively, and a connecting column, the connecting column is connected with the upper end plate and the lower end plate.
In a class of this embodiment, a plurality of through holes is circumferentially formed on the yoke part, and one part of the connecting column penetrates the through holes.
In a class of this embodiment, the other part of the connecting column is positioned outside the lug bosses.
In a class of this embodiment, the tooth part comprises a tooth crown on an outer side, and the tooth crown is exposed out of the injection mold.
Compared with the prior art, the stator for a brushless external-rotor motor has the benefits that: (1) the stator core comprises a yoke part and a tooth part which are separated, the tooth part is formed by overlapping a plurality of silicon-steel sheets, the yoke part is formed by molding permeability magnetic material, a mounting hole is formed in the center of the yoke part, the yoke part is clamped with the tooth part, there is no material waste in the manufacture of the yoke part, the tooth part has a simple structure and small volume, thus the material waste in the stamping process is reduced to the utmost extent, the manufacturing cost of the stator core is reduced, after calculation, compared with the traditional core formed by integral stamping and overlapping, the cost of the stator core manufactured in this invention is reduced by 15%-30%, and the processing and the winding are convenient; (2) the stator core, winding and end insulator are clad with an injection mold, thus the integrity is strong, and the stator for a brushless external-rotor motor has the functions of waterproof and impact-proof protection.
In another aspect, the invention provides a method for manufacturing the stator for a brushless external-rotor motor, the method comprising the following steps:
Compared with the prior art, the manufacturing method of the motor stator has the benefits that: (1) the stator core comprises a yoke part and a tooth part which are separated, wherein the tooth part is formed by overlapping a plurality of silicon-steel sheets, the yoke part is formed by molding permeability magnetic material, thus the scrap waste in the stamping process is reduced, and the cost is reduced; (2) the tooth part is separated, so as to be convenient for winding, thus the process is simple, and the production efficiency is improved; (3) the end insulator, winding, tooth part and yoke part are formed into a whole by injection molding, thus the integrity is good, the large-scale production is favorable, and the waterproof and impact-proof protection functions are good.
The following specific embodiments and drawings aim to serve as the further description for the stator for a brushless external-rotor motor.
As shown in
The method for manufacturing the stator for a brushless external-rotor motor comprises the following steps:
The stator core comprises a yoke part 2 and a tooth part 1 which are separated. The tooth part 1 is formed by a plurality of silicon-steel sheets. The yoke part 2 is formed by molding permeability magnetic material. A mounting hole 21 is formed in the center of the yoke part 2. The yoke part 2 is clamped with the tooth part 1. There is no material waste in the manufacture of the yoke part. The tooth part has a simple structure and small volume. Therefore, the material waste in the stamping process is reduced to the utmost extent. The manufacturing cost of the stator core is reduced, after calculation, compared with the traditional core formed by integral stamping and overlapping, the cost of the stator core manufactured in this invention is reduced by 15%-30%, and the processing and the winding are convenient.
Number | Date | Country | Kind |
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201210505002.7 | Nov 2012 | CN | national |