Otwarty dostęp

Evaluation of the Impact of Tractor Field Works on Changes in Selected Elements of Engine Oils


Zacytuj

Agocs, A., Nagy, A. L., Tabakov, Z., Perger, J., Rohde-Brandenburger, J., Schandl, M., Besser, C., Dörr, N. (2021). Comprehensive assessment of oil degradation patterns in petrol and diesel engines observed in a field test with passenger cars–Conventional oil analysis and fuel dilution. Tribology International, 161, 107079.10.1016/j.triboint.2021.107079 Search in Google Scholar

Chmielewski, Z. (2017). Stany niezawodnościowe oleju silnikowego w eksploatacji. Autobusy: technika, eksploatacja, systemy transportowe, 18, 761-764. Search in Google Scholar

Förster, E., Fraenza, C. C., Küstner, J., Anoardo, E., Nirschl, H., Guthausen, G. (2019). Monitoring of engine oil aging by diffusion and low-field nuclear magnetic resonance relaxation. Measurement, 137, 673-682.10.1016/j.measurement.2019.02.019 Search in Google Scholar

Gołębiowski, W., Zając, G., Wolak, A. (2018). Zawartość metali w olejach silnikowych z ciągników rolniczych (Contents of metals in engine oils from agricultural tractors). Przemysł Chemiczny, 97(5), 696-699.10.15199/62.2018.5.7 Search in Google Scholar

Gołębiowski, W., Zając, G. (2020). Impact assessment of farm tractor engine fuel injector damage on engine oil properties. Agricultural Engineering, 24(2), 65-75.10.1515/agriceng-2020-0018 Search in Google Scholar

Grimmig, R., Lindner, S., Gillemot, P., Winkler, M., Witzleben, S. (2021). Analyses of used engine oils via atomic spectroscopy – Influence of sample pre-treatment and machine learning for engine type classification and lifetime assessment. Talanta, 232, 122431.10.1016/j.talanta.2021.12243134074417 Search in Google Scholar

Holloway, M. (2007). The Oil Analysis Handbook: A Comprehensive Guide to Using and Understanding Oil Analysis. NCH Corporation: Irving, TX, USA. Search in Google Scholar

Hönig, V., Procházka, P., Obergruber, M., Kučerová, V., Mejstřík, P., Macků, J., Bouček, J. (2020). Determination of Tractor engine oil change interval based on material properties. Materials, 13(23), 5403.10.3390/ma13235403773104233261102 Search in Google Scholar

Hurtová, I. (2020). Hodnocení karbonového znečištění motorových olejů. Perner’s Contacts, 15(2), 1652.10.46585/pc.2020.2.1652 Search in Google Scholar

Hurtová, I., Sejkorová, M. (2016). Analysis of engine oils using modern methods of tribotechnical diagnostics. Perner´ s Contacts, 11(4), 47-53. Search in Google Scholar

Kaszkowiak, J., Borowski, S., Dulcet, E., Zastempowski, M. (2015). Analiza uszkodzeń turbosprężarek. Logistyka, 4, 1885-1892. Search in Google Scholar

Lotko, W., Longwic, R., Górski, K., Sander, P., Durczak, T. (2015). Analiza przyczyn uszkodzeń turbosprężarek samochodowych. TTS Technika Transportu Szynowego, 22, 1833-1836. Search in Google Scholar

Malinowska, M. (2014). Analiza zanieczyszczeń oleju silnikowego stosowanego w silniku Cegielski-Sulzer 3AL25/30. Zeszyty Naukowe Akademii Morskiej w Gdyni, 83, 194-202. Search in Google Scholar

Malinowska, M. (2017). Spectroscopic study and analysis of the content of residue elements in Marinol RG 1240 oil after working in various types of engines. Zeszyty Naukowe Akademii Morskiej w Gdyni, 100, 131-140. Search in Google Scholar

Mattetti, M., Maraldi, M., Lenzini, N., Fiorati, S., Sereni, E., Molari, G. (2021). Outlining the mission profile of agricultural tractors through CAN-BUS data analytics. Computers and Electronics in Agriculture, 184, 106078.10.1016/j.compag.2021.106078 Search in Google Scholar

Napiórkowski, J., Gonera, J. (2020). Analysis of failures and reliability model of farm tractors. Agricultural Engineering, 24(2), 89-101.10.1515/agriceng-2020-0020 Search in Google Scholar

Sejkorová, M. (2015)a. Possibilities of processing the tribodiagnostic data. Perner’s Contacts, 10(4), 93–97. Search in Google Scholar

Sejkorová, M. (2015)b. Tribotechnical diagnostics as a tool for effective management of maintenance. Perner’s Contacts, 10(3), 126-136. Search in Google Scholar

Tomczyk, W., Kowalczyk, Z. (2016). The wear processes in the aspect of construction quality and the need to apply agricultural machines servicing. Journal of Research and Applications in Agricultural Engineering, 61(2), 114-119. Search in Google Scholar

Wolak, A., Zając, G., Żółty, M. (2018). Changes of properties of engine oils diluted with diesel oil under real operating conditions. Combustion Engines, 73(2), 34-40.10.19206/CE-2018-206 Search in Google Scholar

Vähäoja, P., Välimäki, I., Roppola, K., Kuokkanen, T., Lahdelma, S. (2008). Wear Metal Analysis of Oils. Critical Reviews in Analytical Chemistry, 38(2), 67-83.10.1080/10408340701804434 Search in Google Scholar

Zając, G., Szyszlak-Bargłowicz, J., Słowik, T., Kuranc, A., Kamińska, A. (2015). Designation of Chosen Heavy Metals in Used Engine Oils Using the XRF Method. Polish Journal of Environmental Studies, 24, 2277-2283.10.15244/pjoes/58781 Search in Google Scholar