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A novel experimental research on vibration characteristics of the running high-speed motorized spindles

Shan, Wentao ; Chen, Xiaoan ; He, Ye and Zhou, Jinming LU (2013) In Journal of Mechanical Science and Technology 27(8). p.2245-2252
Abstract
Because of the complicated running condition and many unpredicted factors such as unmodelled dynamics and external disturbances, the fault analysis of the high-speed motorized spindle is proved difficult. In this paper, a novel experimental method is proposed to research the vibration characteristics of the running high-speed motorized spindle. The method consists of four steps. Firstly, the vibration signal measurement and processing system are built according to data collector and signal analysis software, and then, the vibration signal of the spindle extracted from sophisticated experimental environment is studied by using harmonic wavelet transform for its advantages, such as ultra-narrow band, high resolution detection and ability of... (More)
Because of the complicated running condition and many unpredicted factors such as unmodelled dynamics and external disturbances, the fault analysis of the high-speed motorized spindle is proved difficult. In this paper, a novel experimental method is proposed to research the vibration characteristics of the running high-speed motorized spindle. The method consists of four steps. Firstly, the vibration signal measurement and processing system are built according to data collector and signal analysis software, and then, the vibration signal of the spindle extracted from sophisticated experimental environment is studied by using harmonic wavelet transform for its advantages, such as ultra-narrow band, high resolution detection and ability of extracting weak signal. After that, local frequency domain zooming technique of harmonic wavelet packet is employed to study the vibration spectrum of the spindle at eight different rotating speeds. Furthermore, the axis orbit of the rotor is purified successfully, which can serve as verification basis for subsequent on-site fault diagnosis. Finally, a comparative analysis of eight different vibration signals under the same load but different speeds condition is carried out, the spectral components are classified into two types: the repeated ones and the regular ones. The accordance between experimental results and theoretical analysis suggests that the proposed method in this paper is effective. (Less)
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author
; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
High-speed motorized spindles, Vibration, Harmonic wavelet analysis, Fault diagnosis
in
Journal of Mechanical Science and Technology
volume
27
issue
8
pages
2245 - 2252
publisher
Springer
external identifiers
  • wos:000324548300003
  • scopus:84884527423
ISSN
1738-494X
DOI
10.1007/s12206-013-0607-8
language
English
LU publication?
yes
id
3387e521-a135-41c5-9abd-dda7e67dc7db (old id 4102012)
date added to LUP
2016-04-01 11:03:18
date last changed
2022-01-26 04:59:38
@article{3387e521-a135-41c5-9abd-dda7e67dc7db,
  abstract     = {{Because of the complicated running condition and many unpredicted factors such as unmodelled dynamics and external disturbances, the fault analysis of the high-speed motorized spindle is proved difficult. In this paper, a novel experimental method is proposed to research the vibration characteristics of the running high-speed motorized spindle. The method consists of four steps. Firstly, the vibration signal measurement and processing system are built according to data collector and signal analysis software, and then, the vibration signal of the spindle extracted from sophisticated experimental environment is studied by using harmonic wavelet transform for its advantages, such as ultra-narrow band, high resolution detection and ability of extracting weak signal. After that, local frequency domain zooming technique of harmonic wavelet packet is employed to study the vibration spectrum of the spindle at eight different rotating speeds. Furthermore, the axis orbit of the rotor is purified successfully, which can serve as verification basis for subsequent on-site fault diagnosis. Finally, a comparative analysis of eight different vibration signals under the same load but different speeds condition is carried out, the spectral components are classified into two types: the repeated ones and the regular ones. The accordance between experimental results and theoretical analysis suggests that the proposed method in this paper is effective.}},
  author       = {{Shan, Wentao and Chen, Xiaoan and He, Ye and Zhou, Jinming}},
  issn         = {{1738-494X}},
  keywords     = {{High-speed motorized spindles; Vibration; Harmonic wavelet analysis; Fault diagnosis}},
  language     = {{eng}},
  number       = {{8}},
  pages        = {{2245--2252}},
  publisher    = {{Springer}},
  series       = {{Journal of Mechanical Science and Technology}},
  title        = {{A novel experimental research on vibration characteristics of the running high-speed motorized spindles}},
  url          = {{http://dx.doi.org/10.1007/s12206-013-0607-8}},
  doi          = {{10.1007/s12206-013-0607-8}},
  volume       = {{27}},
  year         = {{2013}},
}