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Analysis of lubrication conditions for angle planetary gearboxes applied in mining scraper conveyors

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents calculations of the relative oil film value for the meshing of angle planetary gearboxes used in mining scraper conveyors. Calculating the value of this parameter was made using methodology that was compliant with ISO/TR 15144-1: 2014 (E). As a result of the analysis, it was found that exploitation of mining gears takes place under boundary or mixed lubrication conditions, with oil viscosity and surface roughness having a significant influence on these conditions.
Rocznik
Tom
Strony
191--199
Opis fizyczny
Bibliogr. 22 poz.
Twórcy
  • Faculty of Mining and Geology, Silesian University of Technology, Akademicka 2 Street, 44-100 Gliwice, Poland.
Bibliografia
  • 1. Skoć Antoni, Jacek Spałek, Sylwester Markusik. 2014. Basics of Machine Construction. Vol. II. Warsaw: WNT. ISBN 978-83-2043-405-7.
  • 2. Lawrowski Zbigniew. 1996. Lubrication Technology. Warsaw: PWN. ISBN 978-830-1074-890.
  • 3. Dowson D., G.R. Higginson. 1976. Elastohydrodynamic Lubrication. Oxford, London: Pergamon Press. ISBN 978-148-318-1899.
  • 4. Hamrock B.J., D. Dowson. Ball Bearing Lubrication. 1981. New York, Chichester, Brisbane, Toronto, Singapore: John Wiley & Sons. ISBN 978-047-1035-534.
  • 5. Wiśniewski M. Elastohydrodynamic Lubrication. 2000. Renningen-Malmsheim: Expert Verlag. ISBN 978-3-8169-1745-8.
  • 6. ISO/TR 15144-1:2014 (E) Calculation of Micropitting Load Capacity Of Cylindrical Spur And Helical Gears – Part 1: Introduction and Basic Principles.
  • 7. Bigoš P., J. Kuľka, M. Mantič, M. Kopas. 2015. “Comparison of local stress values obtained by two measuring methods on blast furnace shell”. Metalurgija 54(1): 101-104.
  • 8. Czech P. 2013. “Intelligent Approach to Valve Clearance Diagnostic in Cars”. Activities of Transport Telematics. TST 2013. Communications in Computer and Information Science 395: 384-391. DOI: https://doi.org/10.1007/978-3-642-41647-7_47.
  • 9. Czech P., Mikulski J. 2014. “Application of Bayes Classifier and Entropy of Vibration Signals to Diagnose Damage of Head Gasket in Internal Combustion Engine of a Car”. Telematics - Support For Transport. TST 2014. Communications in Computer and Information Science 471: 225-232. DOI: https://doi.org/10.1007/978-3-662-45317-9_24.
  • 10. Figlus T., J. Gnap, T. Skrucany, B. Sarkan, J. Stoklosa. 2016. “The Use of Denoising and Analysis of the Acoustic Signal Entropy in Diagnosing Engine Valve Clearance”. Entropy 18(7): 1-11. DOI: https://doi.org/10.3390/e18070253.
  • 11. Figlus T., S. Liscak. 2014. “Assessment of the vibroactivity level of SI engines in stationary and non-stationary operating conditions”. Journal of Vibroengineering 16(3): 1349-1359.
  • 12. Grega R., J. Homisin, M. Puskar, J. KuI’ka, J. Petroci, B. Konecny, B. Krsak. 2015. “The chances for reduction of vibrations in mechanical. System with low-emission ships combustion engines”. International Journal of Maritime Engineering 157(A4): 235-240. DOI: 10.3940/rina.ijme.2015.a4.335.
  • 13. Harachová D. 2016 “Deformation of the elastic wheel harmonic gearing and its effect on toothing”. Grant Journal Vol. 5, No. 1: 89-92, ISSN: 1805-0638.
  • 14. Homišin J., P. Kaššay, M. Puškár, R. Grega, J. Krajňák, M. Urbanský, M. Moravič. 2016. “Continuous tuning of ship propulsion system by means of pneumatic tuner of torsional oscillation”. International Journal of Maritime Engineering: Transactions of the Royal Institution of Naval Architects 158(A3): 231-238. ISSN: 1479-8751. DOI: 10.3940/rina.ijme.2016.a3.378.
  • 15. Krajnák J., J. Homišin, R. Grega, M. Urbanský. 2016. “The analysis of the impact of vibrations on noisiness of the mechanical system”. Diagnostyka 17(3): 21-26.
  • 16. Kulka J., E. Faltinová, M. Kopas, M. Mantič. 2016. “Diagnostics and optimisation of crane track durability in metallurgical plant”. Diagnostyka 17(3): 41-46.
  • 17. Medvecká-Beňová S. L. Miková, P. Kaššay. 2015. “Material properties of rubber-cord flexible element of pneumatic flexible coupling”. Metalurgija 54(1): 194-196.
  • 18. Puskar Michal, Michal Fabian, Jaroslava Kadarova, Peter Blist’an, Melichar Kopas. 2017. “Autonomous vehicle with internal combustion drive based on the homogeneous charge compression ignition technology”. International Journal of Advanced Robotic Systems 14(5). DOI: 10.1177/1729881417736896.
  • 19. Puskar Michal, Melichar Kopas, Jaroslava Kadarova. 2017. “Ecological analysis related to creation of gaseous emissions within transport focused on fulfilment of the future emission standards”. Transportation Research Part D: Transport and Environment 57: 413-421. DOI: 10.1016/j.trd.2017.10.007.
  • 20. Vojtková Jarmila. 2016. “Benefits of application of spur gears with asymmetric profile”. Pomiary Automatyka Robotyka 2(20): 31-35. DOI: 10.14313/PAR_220/31.
  • 21. Zelić A., N. Zuber, R. Šostakov. 2018. “Experimental determination of lateral forces caused by bridge crane skewing during travelling”. Eksploatacja i Niezawodnosc – Maintenance and Reliability 20(1): 90-99. DOI: http://dx.doi.org/10.17531/ein.2018.1.12. ISSN: 1507-2711.
  • 22. Zuber N., R. Bajrić. “Application of artificial neural networks and principal component analysis on vibration signals for automated fault classification of roller element bearings”. Eksploatacja i Niezawodność - Maintenance and Reliability 18(2): 299-306. DOI: 10.17531/ein.2016.2.19. ISSN: 1507-2711.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-80d9a92c-ab5e-4097-9048-b32b1e566295
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