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Low Rare Earth Wide Speed ​​Hybrid Permanent Magnet Flux Switching Double Stator Motor

A hybrid permanent magnet and magnetic flux switching technology, applied in the direction of magnetic circuit, magnetic circuit and electrical components characterized by magnetic materials, can solve the problem that the local magnetic field of the motor is highly saturated, the permanent magnetic field cannot be adjusted, and the adjustment range of the magnetic field is affected. and other problems, to achieve the effect of high space utilization, reducing the risk of local irreversible demagnetization, and wide range of magnetic field adjustment

Active Publication Date: 2017-11-17
JIANGSU UNIV
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  • Summary
  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in order to maintain a high power density, the volume of non-rare-earth permanent magnet materials will be several times that of rare-earth permanent magnet materials, which will inevitably cause space competition problems inside the limited stator or increase the size of the motor.
At the same time, the application of this type of motor in the field of electric vehicles still has the defects that the inherent magnetic field of the permanent magnet cannot be adjusted and the speed regulation range is narrow
In order to realize the effective regulation of the air-gap magnetic field of the magnetic flux switching permanent magnet motor, the hybrid excitation multi-flux switching type automotive hub motor proposed in the document of Chinese patent application number 201310091558.0 and the document of Chinese patent application number 201410344216.X are disclosed In a combined multi-tooth stator core hybrid excitation switching flux motor, the addition of electric excitation windings is used to form a hybrid excitation flux switching motor to achieve the purpose of widening the speed range of the motor, and it can also reduce rare earth permanent magnet materials. However, the mutual coupling of the electric excitation field and the permanent magnetic field of the mixed excitation will easily lead to the high saturation of the local magnetic field of the motor, thus affecting the actual magnetic field adjustment range
It can be seen that when the low-rare-earth hybrid excitation flux switching motor of the prior art is applied to electric vehicles, the rare-earth permanent magnetism can be reduced under the premise of effective adjustment and control of the motor air-gap magnetic field, widening of the motor speed regulation range, and ensuring high-efficiency performance of the motor. There are still problems to be solved in terms of the amount of magnetic materials

Method used

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  • Low Rare Earth Wide Speed ​​Hybrid Permanent Magnet Flux Switching Double Stator Motor
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  • Low Rare Earth Wide Speed ​​Hybrid Permanent Magnet Flux Switching Double Stator Motor

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Embodiment Construction

[0022] see figure 1 and figure 2 , taking a motor with 12 slots in the outer stator / 7 poles in the rotor / 6 poles in the inner stator as an example, the three-phase stator has 12 teeth, 6 magnetized windings, 7 poles in the middle rotor, and 6 hybrid permanent magnets embedded in the inner stator unit.

[0023] The present invention includes outer stator 1-1, intermediate rotor 2-3 and inner stator 1-6, inner stator 1-6 outer coaxial sleeve intermediate rotor 2-3, intermediate rotor 2-3 outer coaxial sleeve outer stator 1-1 . There is a radially outer air gap between the intermediate rotor 2-3 and the outer stator 1-1, and there is a radially inner air gap between the intermediate rotor 2-3 and the inner stator 1-6. The size of the outer air gap and the inner air gap are both 0.4-0.8mm.

[0024] The outer stator 1-1 is composed of the outer stator core, the armature winding 1-2 and the magnetizing winding 1-3. The number of outer stator teeth is X, and the inner surface of...

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Abstract

The invention discloses a little rare earth type wide speed regulation hybrid permanent magnetic flux switching double stator motor. According to the motor, X outer stator teeth are distributed uniformly and circumferentially on an inner surface of an outer stator, m phases of armature windings and magnetization windings are alternately wound on the X outer stator teeth; q magnetic conduction blocks and q insulation blocks are arranged on an outer circle surface of a rotor support of a middle rotor in a staggered mode; an inner stator comprises an inner stator core and a hybrid permanent magnetic unit, K hybrid permanent magnet units are uniformly embedded in the inner stator core along the circumference direction, each hybrid permanent magnet unit respectively comprises a middle non-rare-earth aluminum nickel cobalt permanent magnet and rare earth neodymium iron boron permanent magnets at two sides of the non-rare-earth aluminum nickel cobalt permanent magnet; a stator partitioning structure is employed, the armature windings and the permanent magnets are separated and are respectively arranged in the outer stator and the inner stator, a problem of mutual limit in quantity of traditional magnetic flux switching motor permanent magnets and armature windings is solved, and motor power density and torque density are easy to improve.

Description

technical field [0001] The invention relates to a magnetic flux switching dual-stator motor, in particular to a low-rare-earth wide-speed-adjustable hybrid permanent magnet flux switching dual-stator motor for electric vehicles, which belongs to the technical field of motor body design. Background technique [0002] Vehicle drive motors are the key power components of electric vehicles. The important indicators for evaluating and measuring the performance of drive motors are high power density, high efficiency (high efficiency in all working planes), high reliability, and wide speed range (> 5 times the base Speed), with frequent start and acceleration and deceleration capabilities, low cost, etc. At present, in the field of vehicle drive motors, rare earth permanent magnet motors with advantages such as high efficiency and high power density are the main choice for new energy vehicles. However, the price of medium and heavy rare earth permanent magnet materials has rise...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02K16/04H02K1/02H02K1/17H02K1/14
CPCH02K1/02H02K1/146H02K1/17H02K16/04
Inventor 朱孝勇李西京全力杜怿张超
Owner JIANGSU UNIV
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