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Control system for slow running bearings. Scientific Journal of Silesian University of Technology

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The subject of this paper is the design of a control system for slow running bearings including a strength analysis and load capacity measurement. The intention here is to apply the results to the manufacturing operation of chain conveyors in paint shops.
Rocznik
Tom
Strony
157--164
Opis fizyczny
Bibliogr. 26 poz.
Twórcy
  • Faculty of Mechanical Engineering, Technical University of Liberec, Czech Republic.
autor
  • Faculty of Mechanical Engineering, Technical University of Liberec, Czech Republic
Bibliografia
  • 1. Altschuller G.S. 1984. Erfinden. Wege zur Lösung technischer Probleme. [In German: Inventing. Ways to Solve Technical Problems.] Berlin: Verlag Technik.
  • 2. Bachman W. 1992. Signalanalyse. [From German: Signal Analysis.] Braunschweig/Wiesbaden: Vieweg Publishing Company.
  • 3. Bearing Damage. Damage Detection and Inspection off Used Rolling Bearings. Schaeffler Technologies AG & Co. KG, 2013.
  • 4. Broch J.T. 1984. Mechanicel Vibration and Shock Measurements. Nærum: Brüel&Kjær.
  • 5. Czech Piotr, Jerzy Mikulski. 2014. “Application of Bayes Classifier and Entropy of Vibration Signals to Diagnose Damage of Head Gasket in Internal Combustion Engine of a Car”. In Telematics - Support for Transport. Book Series: Communications in Computer and Information Science 471: 225-232. Springer-Verlag Berlin Heidelberg ISSN: 1865-0929. ISBN: 978-3-662-45316-2.
  • 6. Dresig Hans. 2006. Schwingungen mechanischer Antriebsysteme. [In German: Vibrations of Mechanical Drive Systems.] Berlin: Springer. ISBN-13 978-3-540-26024-0.
  • 7. Figlus Tomasz, Jozef Gnap, Tomas Skrucany, Branislav Sarkan, Jozef Stoklosa. 2016. “The use of denoising and analysis of the acoustic signal entropy in diagnosing engine valve clearance”. Entropy 18(7): article number 253.
  • 8. Figlus Tomasz, Marcin Stańczyk. 2016. “A method for detecting damage to rolling bearings in toothed gears of processing lines”. Metalurgija 55(1): 75-78. ISSN: 0543-5846.
  • 9. Figlus Tomasz, Marcin Stańczyk. 2014. “Diagnosis of the wear of gears in the gearbox using the wavelet packet transform”. Metalurgija 53(4): 673-676. ISSN: 0543-5846.
  • 10. Goreczka, Stefan, Jens Strackeljan. 2010. “Automatic parameter setting for the signal processing in rolling bearing CM”. In Seventh International Conference on Condition Monitoring and Machinery Failure Prevention-CM2010.
  • 11. Hauptmann Peter. 1991. Sensoren. Prinzipien und Anwendungen. [In German: Sensors. Principles and Applications.] Munich and Vienna: Verlag C. Hanser.
  • 12. Herold H. 1993. Sensortechnik. [In German: Sensor Technology.] Heidelberg: Verlag Hüthigure.
  • 13. Jedliński Ł. 2016. “A new design of gearboxes with reduced vibration and noise levels”. Diagnostyka 17(4): 93-98.
  • 14. Kolerus J. 1995. Zustandsüberwachung von Maschinen. [In German: Condition Monitoring of Machines.] Renningen: Verlag Expert.
  • 15. Kosicka E., Kozłowski E., Mazurkiewicz D. 2015. “The use of stationary tests for analysis of monitored residual processes”. Eksploatacja i Niezawodnosc - Maintenance and Reliability 17(4): 604-609. DOI: http://dx.doi.org/10.17531/ein.2015.4.17.
  • 16. Lahdelma Sulo. Esko Juuso, Jens Strackeljan. 2008. “Vibration analysis with generalised norms in condition monitoring”. In Proceedings of the Seventh Aachen Colloquium for Maintenance, Diagnosis and Plant Monitoring. Aachen.
  • 17. Liscak Stefan, Tomasz Figlus. 2014. “Assessment of the vibroactivity level of SI engines in stationary and non-stationary operating conditions”. Journal of Vibroengineering 16(3): 1349-1359.
  • 18. Randall Robert. 1987. Frequency Analysis. Nærum: Brüel&Kjær.
  • 19. Schoppnies E. 1992. Lexikon der Sensortechnik. [In German: Lexicon of Sensor Technology.] Berlin and Offenbach: Verlag VDE.
  • 20. Seeliger A., P. Burgwinkel. 2008. Aachener Schriften zur Rohstoff und Entsorgungstechnik, Vol. 70. [In German: Aachen Writings on Raw Material and Disposal Technology, Vol. 70.] R. Zillekens.
  • 21. Sturm Adolf, Rudolf Förster. 1990. Einführung in die Theorie der Technischen Diagnostik. [From German: Introduction to the Theory of Technical Diagnostics.] Berlin: Springer Verlag.
  • 22. Tomeh E. 2007. Diagnostics Methodology of Rolling Element and Journal Bearings. Liberec: Technická univerzita v Liberci. ISBN 978-80-7372-278-4.
  • 23. Töpfer H. 1989. Grundlagen der Automatisierungstechnik. [In German: Basics of Automation Technology.] Berlin: Verlag Technik.
  • 24. Mazurkiewicz D. 2014. “Computer-aided maintenance and reliability management systems for conveyor belts”. Eksploatacja i Niezawodnosc - Maintenance and Reliability 16(3): 377-382.
  • 25. Mazurkiewicz D. 2010. “Tests of extendibility and strength of adhesive-sealed joints in the context of developing a computer system for monitoring the condition of belt joints during conveyor operation”. Eksploatacja i Niezawodnosc - Maintenance and Reliability 3: 34-39.
  • 26. Wittek Adam Marek, Damian Gąska, Bogusław Łazarz, Tomasz Matyja. 2014. “Automotive stabilizer bar - stabilizer bar strength calculations using FEM, novelization of radial areas of tubular stabilizer bars”. Mechanika 20(6): 535-542. ISSN 1392-1207.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-22be6151-9c07-42d9-996c-15f25836835b
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