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Overall factory average spectrum: global vibration index for diagnosis and prognosis of large sets of rotating machinery

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Spectral analysis of rotating machinery requires studying the signals received from each machine, which converts hundreds of spectra to analyze, especially in big plants, where one can find a large number of similar machines. The maintenance departments require few indicators properly hierarchied with the appropriate information necessary for each organizational level, without exceeding the type and amount of information required at the higher levels. It is therefore, necessary for an indicator to show the current vibratory condition of the entire plant, where trends can be easily understood by people, who are not expert in detailed vibration analysis of spectra. The trend shown by the indicator should assess the success of the implementation of CBM and other maintenance programs in the plant, and these parameters should be easily displayable. Therefore, maintenance managers need this kind of indicators and scorecards to measure through simple methods for the success of their departments for achieving contribution to the company goals.
Czasopismo
Rocznik
Tom
Strony
39--47
Opis fizyczny
Bibliogr. 11 poz., rys., wykr.
Twórcy
autor
autor
  • Division of Operation and Maintenance Engineering, Lulea University of Technology, Lulea , Sweden, diego.galar@itu.se
Bibliografia
  • 1. Girdhar P.2004. Practical Machinery Vibration Analysis and Predictive Maintenance. Oxford: Elsevier.
  • 2. Palomino E. 1997. La Medición Y El Análisis De Vibraciones En El Diagnóstico De Máquinas Rotatorias. Cuba: CEIM - Innovación y Mantenimiento.
  • 3. Oram-Brigham E. 1988. The Fast Fourier Transform and its applications. UK: Prentice Hall.
  • 4. Bloch H. & Geitner F. 1999 Machinery Failure Analysis and Troubleshooting. Practical machinery Management for Process Plants.Volume 2,3rd Edition Elsevier.
  • 5. Mobley, R. 1999. Vibration fundamentals. USA:Butterworth-Heinemann.
  • 6. Kumaraswamy. S. & Rakesh. J. 2002. Standardization of Absolute Vibration Level and Damage Factors for Machinery Health Monitoring. Proceedings of VETOMAC-2, 16-18 December,2002.
  • 7. MIL-STD-2074 1978. Failure Classification For Reliability Testing. Washington: USA Department Of Defense.
  • 8. Karassik, Igor J.; Messina, Joseph P.; Cooper, Paul; Heald, Charles C. 2001. Pump Handbook (3rd Edition). McGraw-Hill.
  • 9. Reeves C. W. 1998. The Vibration Monitoring Handbook. USA: Coxmoor Publishing Co.
  • 10. Marscher W. 2004. The Relationship of Vibration to Problems in Centrifugal Pumps. Chemical engineering. New York: Mc Graw-Hill.
  • 11. Galar D. 2010. Overall Factory Vibration Level: The need for global indicators in CBM. DIAGNOSTYKA’ 2(54)/ 2010.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAR0-0060-0024
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