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Permanent magnet bearing squeeze oil film damper

A technology of squeezing oil film damping and permanent magnet bearing, applied in the directions of bearings, shafts and bearings, springs/shock absorbers, etc. The effect of reducing hoop tensile stress

Active Publication Date: 2013-07-24
JIANGSU UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this kind of damper has two disadvantages: 1) The radial stiffness it can provide is too small and the anti-overturning ability is poor, resulting in too large inclination angle of the flywheel shafting during operation, which is easy to cause the motor magnetic field to change drastically along the axial direction. Cause low-frequency precession; 2) The damping provided is too small. When the system experiences low-frequency motion, the excess energy of the shafting cannot be dissipated. Therefore, the damper that can provide greater radial stiffness and damping capacity will have important industrial application value

Method used

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  • Permanent magnet bearing squeeze oil film damper
  • Permanent magnet bearing squeeze oil film damper
  • Permanent magnet bearing squeeze oil film damper

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Embodiment Construction

[0022] In order to make the content of the present invention more clearly understood, the present invention will be further described in detail below based on specific embodiments and in conjunction with the accompanying drawings.

[0023] Such as Figure 2~4 As shown, a permanent magnetic bearing squeeze oil film damper includes an oil film journal 2, a bearing outer ring 3, a bearing inner ring 5 fixedly set on the shafting 4, and a lubricating oil cavity 8 filled with lubricating oil 7, the bearing Both the outer ring 3 and the oil film journal 2 are located in the lubricating oil cavity 8, and the bearing outer ring 3 is fixedly installed on the inner side of the oil film journal 2, and also includes an elastic squirrel cage bar 1, and one end of the elastic squirrel cage bar 1 is located in the lubricating oil chamber. The cavity 8 is outside and fixed, the other end of the elastic squirrel cage bar 1 is fixedly connected with the oil film journal 2, the bearing inner rin...

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Abstract

The invention discloses a permanent magnet bearing squeeze oil film damper which comprises an oil film shaft neck, a bearing outer ring, a bearing inner ring and a lubricating oil cavity full of lubricating oil, wherein the bearing inner ring is sleeved on a shafting, the bearing outer ring and the oil film shaft neck are both located inside the lubricating oil cavity, and the bearing outer ring is fixedly arranged on the inner side of the oil film shaft neck. The permanent magnet bearing squeeze oil film damper further comprises an elastic squirrel-cage bar, wherein one end of the elastic squirrel-cage bar is located outside the lubricating oil cavity and is fixed, and the other end of the elastic squirrel-cage bar is fixedly connected with the oil film shaft neck. The bearing inner ring and the bearing outer ring are both magnetized in the radial direction, the opposite surface of the magnetized bearing inner ring and the opposite surface of the magnetized outer ring have like magnetic poles, and a gap is formed between the bearing inner ring and the bearing outer ring. The permanent magnet bearing squeeze oil film damper can improve damping ability and radial supporting stiffness.

Description

technical field [0001] The invention relates to a squeeze oil film damper for a permanent magnetic bearing, which belongs to the technical field of non-contact bearing dampers. Background technique [0002] At present, in order to ensure the safe and stable operation of the shaft system, in various high-speed vertical rotating machines such as centrifuges, turbines, and energy storage flywheels, the upper end of the rotor is often used figure 1 The suspended Squeeze Film Damper shown dampens vibrations in the system. However, this kind of damper has two disadvantages: 1) The radial stiffness it can provide is too small and the anti-overturning ability is poor, resulting in too large inclination angle of the flywheel shafting during operation, and it is easy to cause the motor magnetic field to change drastically along the axial direction. Cause low-frequency precession; 2) The damping provided is too small. When the system experiences low-frequency motion, it cannot dissipa...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F15/12F16F15/121F16F15/16F16C32/04
Inventor 王洪昌陈修祥何庆
Owner JIANGSU UNIV OF TECH
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