Motor, compressor and refrigeration equipment
A technology of stators and convex teeth, which is applied in mechanical equipment, machines/engines, electromechanical devices, etc., can solve the problems that motors cannot meet the needs of high energy efficiency, and achieve the effects of improving motor efficiency, reducing system loss, and improving energy efficiency
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Embodiment 1
[0047] Such as Figure 1 to Figure 3 As shown, a motor 100 includes: a rotor 110; the rotor 110 includes a rotor core 111, the rotor core 111 is provided with a plurality of slots 112, and the plurality of slots 112 are circumferentially distributed around the center line of the rotor core 111 , each slot 112 is provided with a magnetic piece 113; the stator, the stator includes a stator core 121 and a stator winding, the stator core 121 is provided with a plurality of stator protruding teeth 122, and a plurality of stator protruding teeth 122 surround the stator core 121 The center line of the stator is distributed circumferentially, and the stator windings are wound on a plurality of stator convex teeth 122; wherein, the relationship between the number Z of stator convex teeth 122 and the number of pole pairs P of the rotor 110 satisfies: Z / P=3. The effective value U of the line-to-line back EMF of the stator winding, the speed n of the motor 100 and the outer diameter Φso o...
Embodiment 2
[0054] On the basis of the first embodiment above, the number Z of the stator convex teeth 122 is further limited to 9, then 0.638≦ke / Φso≦0.933.
[0055] In this embodiment, when the number of stator convex teeth 122 is different, the demagnetization capability of the motor 100 is different, and then different numbers of stator teeth can correspond to different value ranges of ke / Φso. According to the demagnetization characteristics of the motor 100, the higher the number of teeth more, the stronger the demagnetization capability of the motor 100 is, the larger the value range of ke / Φso can be. Thus, when the number Z of stator convex teeth 122 is 9, by making the ratio of ke to the outer diameter Φso of the stator between 0.638 and 0.933, such as ke / Φso is equal to 0.7 or 0.8 or 0.9, the motor can be On the premise that the demagnetization ability of the motor 100 does not decrease, the system loss of the motor 100 is significantly reduced, thereby improving the energy effici...
Embodiment 3
[0061] On the basis of the first embodiment above, the number Z of stator convex teeth 122 is further limited to 12, then 0.679≦ke / Φso≦1.056.
[0062] In this embodiment, when the number of stator convex teeth 122 is different, the demagnetization capability of the motor 100 is different, and then different numbers of stator teeth can correspond to different value ranges of ke / Φso. According to the demagnetization characteristics of the motor 100, the higher the number of teeth more, the stronger the demagnetization capability of the motor 100 is, the larger the value range of ke / Φso can be. Therefore, when the number Z of stator convex teeth 122 is 12, by making the ratio of ke to the outer diameter Φso of the stator between 0.679 and 1.056, such as ke / Φso is equal to 0.7 or 0.8 or 1, the motor can be On the premise that the demagnetization ability of the motor 100 does not decrease, the system loss of the motor 100 is significantly reduced, thereby improving the energy effic...
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Abstract
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