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A method for early fault diagnosis of planetary gearbox based on vmd-amckd

A planetary gearbox and diagnostic method technology, applied in the testing of mechanical components, testing of machine/structural components, instruments, etc., can solve the difficulties in determining the parameters of VMD algorithm and MCKD algorithm, the difficulty of early fault diagnosis, and the interference of system noise on planetary gears Boxes and other problems to achieve the effect of overcoming the difficulty of weak fault diagnosis, overcoming difficult selection problems, and avoiding the impact

Active Publication Date: 2019-12-31
FUZHOU UNIV
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  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] In view of this, the purpose of the present invention is to provide a method for early fault diagnosis of planetary gearboxes based on VMD-AMCKD. The impact of early faults on planetary gearboxes is very weak, and it is easy to be disturbed by system noise, which makes early fault diagnosis of planetary gearboxes difficult. problem, and it is difficult to determine the parameters of VMD algorithm and MCKD algorithm

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  • A method for early fault diagnosis of planetary gearbox based on vmd-amckd
  • A method for early fault diagnosis of planetary gearbox based on vmd-amckd
  • A method for early fault diagnosis of planetary gearbox based on vmd-amckd

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Embodiment 1

[0054] A power transmission failure simulation test bench (DDS) was built, and weak cracks were artificially processed at the position of the tooth root of the sun gear to simulate the early crack failure of the planetary gearbox. The actual input speed of the drive motor is 39.80Hz. Use the acceleration sensor to collect the vibration signal of the planetary gearbox box, and the sampling frequency is f s It is 12800Hz, and the total number of sampling points is 12800 points. The parameters of the number of teeth of the planetary gearbox are shown in Table 1, and the characteristic frequency of the gearbox shown in Table 2 can be calculated from the parameters of the number of teeth and the input speed.

[0055] Table 1 Teeth parameters of single-stage planetary gearbox

[0056] gear Sun gear planetary gear Ring gear Number of teeth 28 36 100

[0057] Table 2 Corresponding characteristic frequency of planetary gearbox (unit / Hz)

[0058] ...

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Abstract

The invention relates to an epicyclic gearbox incipient fault diagnosis method based on VMD-AMCKD. The method comprises the following steps: S1, acquiring a vibration acceleration signal of an epicyclic gearbox, and determining a VMD parameter; step S2, based on the VMD parameter, performing VMD decomposition for the original vibration signal, and selecting an optical component according to a maximum correlation coefficient criterion; step S3, according to a GOA optimizing algorithm, performing optimizing of a MCKD parameter for the optimal component; step S4, according to the MCKD parameter obtained in the step S3, performing MCKD analysis for an optimal component signal, and then performing envelope demodulation for the signal subjected to deconvolution; step S5, contrasting a bearing theoretical fault characteristic frequency value with a spectral line of which a peak value is obvious in an envelope spectrum, thereby diagnosing out a fault type and determining a fault part. In the method provided by the invention, the GOA algorithm is used, thus, a problem of difficulty in determination of the parameter in the MCKD algorithm is overcome, moreover, signal noise reduction and separation of each frequency band are realized through VMD, fault impact constituents are enhanced further through the MCKD, and the method is more accurate for epicyclic gearbox incipient fault diagnosis.

Description

technical field [0001] The invention belongs to the field of fault diagnosis of rotating machinery, and in particular relates to an early fault diagnosis method of a planetary gearbox based on VMD-AMCKD. Background technique [0002] The planetary gearbox has the advantages of small size, strong carrying capacity, and large transmission ratio, so it has been widely used in industry, transportation, and military fields. If the early failure of the planetary gearbox is not detected in time, the consequences may be disastrous. The early fault vibration signal of the planetary gearbox is very weak and easily covered by noise; coupled with the complexity of the actual working conditions, it is difficult to detect the early fault signal of the planetary gearbox. [0003] Planetary gearbox fault signals are nonlinear and non-stationary. For this type of signal, scholars have introduced many processing methods into the field of fault diagnosis. Common signal processing methods are...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M13/021G01M13/028
CPCG01M13/021G01M13/028
Inventor 张俊张建群钟敏李习科陈涛
Owner FUZHOU UNIV
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