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Novel self-stabilization passive magnetic bearing for generator of power grid

A magnetic bearing, self-stabilizing technology, applied in the directions of bearings, shafts and bearings, mechanical equipment, etc., can solve the problems of the combination configuration of passive magnetic bearings, the inability to achieve full suspension with five degrees of freedom, the intricate power grid technology, etc., to achieve freedom The effect of full suspension, weight reduction and volume reduction

Active Publication Date: 2016-01-27
北京高孚动力科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The power grid technology is complicated. In the grid power system, the generator is one of the important links. In order to improve the efficiency of the generator, improve the technical level of the generator, and achieve the national goal of energy conservation and environmental protection, the development of magnetic levitation motors has developed rapidly in recent years. Traditional The magnetic levitation motor system realizes the levitation of five degrees of freedom. It must adopt the combination of active magnetic bearing and passive magnetic bearing. We know that magnetic levitation bearing is divided into active type and passive type. Active magnetic levitation bearing is superimposed on the basis of bias magnetic field. The magnetic suspension bearing is made by controlling the magnetic field generated by the coil. The passive magnetic suspension bearing is a magnetic suspension bearing made of only the permanent magnetic field. The existing passive magnetic bearings are divided into suction type and repulsion type passive magnetic bearings, most of which use stator permanent magnets The interaction with the permanent magnet of the rotor in the air gap produces the force required for stability. According to Enshoe's theorem, a single passive magnetic bearing cannot achieve full suspension with five degrees of freedom, but this theorem does not apply to the combined configuration of passive magnetic bearings. To illustrate, the current single passive magnetic bearing really cannot achieve full suspension with five degrees of freedom

Method used

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  • Novel self-stabilization passive magnetic bearing for generator of power grid
  • Novel self-stabilization passive magnetic bearing for generator of power grid
  • Novel self-stabilization passive magnetic bearing for generator of power grid

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Embodiment Construction

[0017] figure 1 It is a pair of single-group passive magnetic bearings described in the present invention, in which α is an acute angle of a cross-sectional parallelogram, and D i Be the internal diameter of permanent magnet ring, be 280mm in the present embodiment, D o Be the external diameter of permanent magnet ring, be 390mm in the present embodiment, L is the axial length of permanent magnet ring, be 120mm in the present embodiment, the thickness of each permanent magnet ring is 110mm in the present embodiment, among the figure δ is the length of the air gap, which is 1.5mm in this embodiment. When one of the permanent magnet rings moves axially, the resulting displacement is called the offset, and the positive movement along the z-axis or the positive direction of the y-axis is positive , movement along the negative z-axis or negative y-axis is negative. All rings of permanent magnets are radially magnetized.

[0018] When the acute angle α of the parallelogram in the...

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Abstract

The invention relates to a non-contact magnetic bearing, in particular to a novel self-stabilization passive magnetic bearing for a power grid. The novel self-stabilization passive magnetic bearing can be used as a non-contact support of rotary components in generators for the small power grid and other mechanical equipment. The passive magnetic bearing is composed of two sets of passive magnetic bearing pairs. Each set of passive magnetic bearing pair is composed of two permanent magnet rings. A stator part and a rotor part are formed by the passive magnetic bearing pairs together. A magnetic air gap is formed between the stator part and the rotor part. The section shape of each permanent magnet ring is specially required. A sensor system, a control coil and a power amplifier circuit needed by the control coil are omitted, and especially, the structural form of the passive magnetic bearing pairs is adopted so that five-freedom-degree full suspension of the passive magnetic bearing can be achieved.

Description

technical field [0001] The invention relates to a non-contact magnetic suspension bearing, in particular to a novel self-stabilizing passive magnetic bearing structure for power grid generators, which can realize non-contact support of rotating parts such as small generators and motors for power grids. Background technique [0002] The power grid technology is complicated. In the grid power system, the generator is one of the important links. In order to improve the efficiency of the generator, improve the technical level of the generator, and achieve the national goal of energy conservation and environmental protection, the development of magnetic levitation motors has developed rapidly in recent years. Traditional The magnetic levitation motor system realizes the levitation of five degrees of freedom. It must adopt the combination of active magnetic bearing and passive magnetic bearing. We know that magnetic levitation bearing is divided into active type and passive type. A...

Claims

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Application Information

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IPC IPC(8): F16C32/04
Inventor 俱子研
Owner 北京高孚动力科技有限公司
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