An air-floating rotor bearingless motor with slot-wedge ventilation
A bearingless motor and rotor technology, applied in the direction of electromechanical devices, electrical components, electric components, etc., can solve the problems of increasing the size and complexity of the motor stator, reducing the motor efficiency and power density, and excessively long axial length. Achieve the effect of eliminating mechanical bearings, suppressing rotor temperature rise, and shortening length
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specific Embodiment approach 1
[0031] Specific implementation mode one: combine Figure 1 to Figure 3 Describe this embodiment in detail. A slot wedge ventilated air-floating rotor bearingless motor described in this embodiment includes a stator 1, a rotor 2 and a casing 3;
[0032] The stator 1 is fixed in the casing 3, the rotor 2 is set in the stator 1, and there is an air gap between the stator 1 and the rotor 2;
[0033] Stator 1 includes stator core 1-1, stator winding 1-2 and slot wedge 1-3;
[0034] The stator core 1-1 is fixed to the casing 3, and the stator core 1-1 is evenly opened with a plurality of slots along the circumferential direction, each slot is provided with a stator winding 1-2, and each inner slot is fixed with a slot wedge 1 -3, the slot wedge 1-3 is provided with an air supply channel 1-3-1 and an orifice 1-3-2, and the orifice 1-3-2 communicates with the air supply channel 1-3-1 and faces the rotor 2 ;
[0035] The gas is input into the gas supply channel 1-3-1, and is ejected...
specific Embodiment approach 2
[0045] Specific embodiment 2: This embodiment is a further description of a slot wedge ventilated air-floating rotor bearingless motor described in specific embodiment 1. In this embodiment, the slot opened by the stator core 1-1 is an open slot .
[0046] In order to ensure sufficient air supply, the diameter of the orifice 1-3-2 in the slot wedge 1-3 should be increased to generate greater suspension force. For this reason, the slot type of the stator should be an open slot, and the slot wedge 1-3 Use magnetic slot wedges to reduce the distortion rate of the air gap magnetic field.
specific Embodiment approach 3
[0047] Specific embodiment 3: This embodiment is a further description of a slot wedge ventilated air-floating rotor bearingless motor described in specific embodiment 1. In this embodiment, the magnetization direction of the rotor pole 2-1 is radial , to reduce the harmonic components of the air-gap magnetic field.
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