Modification of changes in the stress-strain state of crane slewing gear elements while operational conditions
- Authors: Sladkova L.A.1, Fokin V.V.1
-
Affiliations:
- Russian University of Transport
- Issue: Vol 192, No 4 (2024)
- Pages: 22-28
- Section: MECHANICAL ENGINEERING
- URL: https://bakhtiniada.ru/1813-8225/article/view/279154
- DOI: https://doi.org/10.25206/1813-8225-2024-192-22-28
- EDN: https://elibrary.ru/TILVGG
- ID: 279154
Cite item
Full Text
Abstract
Despite the high technical level of hoisting equipment purchased abroad, a catastrophic failure of the slewing bearings of these cranes occurs after 3-5 years of service instead of the regulated 15 years. The most characteristic are: wear of 6-polyamide cassettes, cages of gear teeth and turntable; rolling elements falling out of the turntable; squeezing out the sealing tape. To identify the hidden cause of premature failure of the slewing rings of «Liebherr» cranes, the authors carried out the experiment during loading and unloading operations, which shows the tendency of warming up the elements of the slewing support, considering the cyclic nature of the crane operation. It has been established that this process is linear both for cassettes (polyamide 6 material), in which the rolling elements are located, and for the rolling elements themselves (bearing steel). For 5 loading cycles, the rolling elements warm up to a 40 mm depth to a temperature of about 40-45° C. The proposed working hypothesis allows identifing the hidden cause of premature failure of the slewing support of «Liebherr» cranes operating in central Russia. A change in the stress-strain state of the cassette is established, leading to an increase in wear of the cassettes and rolling elements, since stresses arise between the end of the roller surface and the cassette in the direction of the contact plane.
About the authors
Lyubov A. Sladkova
Russian University of Transport
Email: rich.cat2012@yandex.ru
ORCID iD: 0009-0008-6786-0386
SPIN-code: 9088-6547
Doctor of Technical Sciences, Professor (Russia), Professor of Ground Transportation and Technological Means Department
Russian Federation, Moscow, RussiaValeriy V. Fokin
Russian University of Transport
Author for correspondence.
Email: valerafokin@inbox.ru
ORCID iD: 0009-0003-0941-0217
Graduate Student of Ground Transportation and Technological Means Department
Russian Federation, Moscow, RussiaReferences
- Bardyshev O. A. Osobennosti sertifikatsii zarubezhnykh kranov i pod”yemnikov [Features of certification of foreign cranes and hoists] // Vse krany. Vse Krany. 2006. No. 3. P. 31–34. (In Russ.).
- Bardyshev O. A., Stotskaya L. V. IV Ural’skiy kongress pod”yemno-transportnogo oborudovaniya [IV Ural Congress of Lifting and Handling Equipment] // Mekhanizatsiya stroitel’stva. Mekhanizatsiya Stroitel’stva. 2011. No. 2. P. 27–28. EDN: NECETR. (In Russ.).
- Fokin V. V., Sladkova L. A. Metodika vybora materialov kassety oporno-povorotnogo ustroystva s uchetom izmeneniya napryazhenno-deformirovannogo sostoyaniya pri ekspluatatsii [Method of Selection of Materials of the Cassette of the Slewing Support Device Taking into Account the Change in the Stress-Strain State During Operation] // 74 Otkrytaya mezhdunar. stud. nauch. konf. SNK-2024, 15–18 aprelya 2024 g. 74 Open International Student Scientific Conference SNK-2024, 15-18 April 2024. Moscow, 2024. P. 56–61. (In Russ.).
- Gorelova M. V., Sladkova L. A., Fokin V. V. Metodika obespecheniya bezopasnoy raboty strelovykh samokhodnykh kranov [Methods for ensuring the safe operation of self-propelled jib cranes] / 27 Moskovskaya mezhdunar. mezhvuz. nauch.-tekhn. konf. studentov, magistrantov, aspirantov i molodykh uchenykh. 27 Moscow International Interuniversity Scientific and Technical Conf. of Students, Undergraduate Students, Graduate Students and Young Researchers. Moscow, 2023. P 353–357. (In Russ.).
- Chichinadze A. V. Opredeleniye temperatury poverkhnosti treniya pri kratkovremennykh tormozheniyakh [Determination of friction surface temperature during short-term braking] // Treniye tverdykh tel. Solid Friction. Moscow, 1964. P. 85–99. (In Russ.).
- Patent 22088570 Russian Federation, IPC C07 C51/41, 53/126. Sposob polucheniya soley metallov zhirnykh kislot S8-S22 (мetallicheskikh myl) [Method of producing C8-C22 - aliphatic acid metal salts (Metallic soap)] / Golota A. F., Morozov E. G., Agapov P. A. No. 95118922/04. (In Russ.).
- Spravochnik mashinostroitelya [Mechanical Engineer's Handbook] // Ed. by S. V. Serensenni. In 6 vols. Moscow, 1962. Vol. 3. 652 p. (In Russ.).
- Pisarenko G. S., Yakovlev A. P., Matveyev V. V. Spravochnik po soprotivleniyu materialov [Material Strength Handbook]. Kiev, 1975. 705 p. (In Russ.).
- Kragelskiy I. V. Treniye i iznos [Friction and wear]. 2nd ed. revised and supplemented. Moscow, 1968. 480 p. (In Russ.).
- Ekemini B. I., Edidiong A. E., Uwemedimo E. U. [et al.]. Oluwaseyic Experimental and theoretical study of corrosion inhibition effect of Cucumeropsis mannii N. seed oil metallic soap of zinc on mild steel surface in sulphuric acid // Advances in Applied Science Research. 2014. No. 5 (3). P. 26–53. (In Russ.).
- Uspenskiy I. A., Fadeyev I. V., Pestryayeva L. Sh. [et al.] Novyye ingibitory korrozii dlya zashchity sel’skokhozyaystvennoy tekhniki [New corrosion inhibitors for the protection of agricultural machinery] // Izvestiya Nizhnevolzhskogo agrouniversitetskogo kompleksa: Nauka i vyssheye professional’noye obrazovaniye. Izvestia of the Lower Volga Agro-University Complex. 2020. No. 3 (59). P. 1–11. doi: 10.32786/2071-9485-2020-03-39. EDN: UMMBAX. (In Russ.).
Supplementary files
