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Large-torque magnetic suspension flywheel

A technology of magnetic levitation and high torque, applied in the direction of the guidance device of space navigation aircraft, can solve the problems of small torque, increase the weight and volume of the flywheel, and increase the output of the rotor, and achieve the effect of low power consumption, low loss and stable attitude.

Inactive Publication Date: 2012-01-04
BEIHANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

No matter which structure is adopted, the main function is to control the attitude of the spacecraft through the momentum exchange system. In order to meet the requirements for the bearing capacity of the spacecraft under the condition of large angular rate, it is necessary to increase the output force of the rotor, which can only be increased by increasing the length of the torsional arm. That is, the span of the bearing rotor, which will inevitably increase the weight and volume of the flywheel, so the existing magnetic levitation flywheel has the disadvantage of small torque

Method used

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Embodiment Construction

[0024] like figure 1 As shown, the present invention is made up of stationary part and rotating part, and stationary part comprises: base (11), sealing cover (8), mandrel (5), axle sleeve (13), adapter plate (10), protection bearing ( 6), radial decoupling tapered magnetic bearing assembly (4) stator part, Lorentz force magnetic bearing assembly (1) stator part, sensor assembly (12) and motor assembly (9) stator part; the rotating part includes: Rim (2), hub (3), limit sleeve (7), radial decoupling conical magnetic bearing assembly (4) rotor part, Lorentz force magnetic bearing assembly (1) rotor part and motor assembly (9) rotor part. The mandrel (5) is located at the center of the wheel body and is fixed on the adapter plate (10). The mandrel (5) is equipped with a protective bearing (6) and an axle sleeve (13). The radially outer side of the protective bearing (6) is The limit sleeve (7), the protective bearing (6) and the limit sleeve (7) form a radial protection gap in ...

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Abstract

The invention discloses a large-torque magnetic suspension flywheel, which can be used as an execution mechanism for attitude stabilization and attitude maneuver of spacecrafts such as a satellite, an earth observation platform and the like. The magnetic suspension flywheel mainly consists of a base, a sealing cover, a radial decoupling conical magnetic bearing assembly, a core shaft, a rotor assembly, a Lorentz force magnetic bearing assembly, a motor assembly, a sensor assembly and the like. The core shaft is positioned in the center of the wheel body, a stator assembly is positioned at theradial outer side of the core shaft, the rotor assembly is arranged at the radial outer side of the stator assembly, the rotor assembly consists of a wheel flange and a wheel hub, and the Lorentz force magnetic bearing assembly consists of a magnetic bearing stator part and a magnetic bearing rotor part; an adapter plate is connected with the core shaft, the stator assembly and a motor stator; and the sensor assembly consists of a sensor shell and a sensor. The components of the flywheel are arranged reasonably and compactly, the flywheel can be used for attitude stabilization of the spacecraft, and attitude maneuver of the spacecraft can be realized by using large control torque provided by gyroscopic effect of the magnetic suspension flywheel.

Description

technical field [0001] The invention relates to a high-torque magnetic levitation flywheel, which can be used as an actuator for attitude control systems of spacecraft such as satellites and earth observation platforms. Background technique [0002] With the diversification of spacecraft missions such as satellites and earth observation platforms, spacecraft have higher and higher requirements for the actuators of the attitude control system. At present, the flywheel used as the actuator of the spacecraft attitude control system is generally still supported by mechanical bearings. The mechanical bearings have problems such as mechanical wear, unbalanced vibration uncontrollable, and large zero-crossing friction torque. In the existing magnetic levitation flywheel structure based on magnetic bearing support, two single-degree-of-freedom axial magnetic bearings + two two-degree-of-freedom radial magnetic bearing structures are generally used, or two three-degree-of-freedom axi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64G1/28
Inventor 房建成韩雪飞汤继强王春娥孙津济
Owner BEIHANG UNIV
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