Generator rotor unbalance magnetic tension testing bench supported by sliding bearings

A technology of generator rotor and sliding bearing, applied in vibration testing, testing of machine/structural components, measuring devices, etc., can solve the problem of increased system vibration, unbalanced electromagnetic force of radial and tangential components, and reduced power generation efficiency, etc. question

Inactive Publication Date: 2012-06-20
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] When the generator is running at high speed, due to the eccentricity between the rotor and the stator, an uneven air gap magnetic field is formed, which will generate an unbalanced electromagnetic force with radial and tangential components...

Method used

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  • Generator rotor unbalance magnetic tension testing bench supported by sliding bearings
  • Generator rotor unbalance magnetic tension testing bench supported by sliding bearings
  • Generator rotor unbalance magnetic tension testing bench supported by sliding bearings

Examples

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Embodiment

[0050]Such as Figure 1 to Figure 3 , an unbalanced magnetic tension test bench for a generator rotor supported by a sliding bearing, comprising a variable pole logarithm generator rotor spindle system, a basic frame of the test bench and a generator stator output load adjustment system.

[0051] Among them, the variable magnetic pole logarithm generator rotor spindle system further includes:

[0052] Generator rotor 301, tachometer wheel 302, front sliding bearing support subsystem 303, first sensor bracket 304, first balance weight wheel 305, stator front end cover 306, cooling fan 307, generator rotor iron core and excitation coil 308 , Generator stator 309, slip ring 310, carbon brush bracket 311, carbon brush, stator rear end cover 312, second balance weight wheel 313, second sensor bracket 314, rear sliding bearing support subsystem 315.

[0053] The tachometer wheel 302, the generator rotor iron core, the excitation coil 308, and the slip ring 310 are all installed on ...

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PUM

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Abstract

The invention discloses a generator rotor unbalance magnetic tension testing bench supported by sliding bearings, which includes a variable magnetic pole logarithmic generator rotor main shaft system and a testing bench basic framework. The rotor main shaft system includes a generator rotor, a front sliding bearing support subsystem, a sensor bracket, a stator front end cover, a generator rotor core and a magnet exciting coil, a generator stator, a collecting ring, a carbon brush bracket, a carbon brush, a stator rear end cover, and a rear sliding bearing support subsystem. The generator rotor core and the colleting ring are both mounted on the generator rotor, front and rear ends of the generator rotor are supported by the front and the rear sliding bearing support subsystems, and the generator stator is mounted outside the generator rotor. The testing bench basic framework includes an electromotor, a low-speed coupler, a speed-changing gear box and a high-speed coupler, wherein the electromotor is connected with a low-speed shaft of the speed-changing gear box through the low-speed coupler, and a high-speed shaft of the speed-changing gear box is connected with the generator rotor through the high-speed coupler.

Description

technical field [0001] The invention relates to an unbalanced magnetic tension test bench for a generator rotor supported by a sliding bearing. [0002] Background technique [0003] Electricity occupies a major position in my country's energy consumption structure. Hydroelectric power generation and thermal power generation are currently the most important sources of electricity in China, and thermal power generation is still the most important and stable source of electricity in my country. The hydroelectric generator set is driven by a water turbine with a low speed, so a multi-pole logarithmic rigid rotor structure is used to obtain electric energy at the mains frequency. The rotor is thick and short, and the rated operating speed is far below its first-order critical speed; The unit is usually driven by a coal-fired steam turbine or gas turbine, with high operating speed and heavy load. Therefore, large-scale thermal power stations generally use unipolar pair alternato...

Claims

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Application Information

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IPC IPC(8): G01M7/02G01L15/00
Inventor 万召荆建平谢帆徐晓霞刘显波孟光
Owner SHANGHAI JIAO TONG UNIV
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