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Title of the article PREDICTION OF THE DURABILITY OF THE GRAIN HARVESTER REEL SUPPORT BEARING OPERATING UNDER IRREGULAR LOAD UNDER MECHANO-SLIDING FATIGUE
Authors LIS Ivan N., M. Sc. in Eng., Lecturer of Special Disciplines, Lida College of Yanka Kupala State University of Grodno, Lida, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.
In the section DYNAMICS, DURABILITY OF VEHICLES AND STRUCTURES
Year 2022
Issue 3(60)
Pages 35–41
Type of article RAR
Index UDK 539.4
DOI https://doi.org/10.46864/1995-0470-2022-3-60-35-41
Abstract The calculation scheme of the reel of the combine harvester “Lida-1300” is given. The operating time of the bearing of reel support for service life of the combine, the frictional loads of the bearing and the bending stresses of the shaft are determined. Loading blocks are formed with increasing, decreasing and arbitrarily changing load. The influence of values of the softening parameters α and hardening parameters β, the duration of the loading stage on the calculated wear value and durability is analyzed. It has been established that for unchanged or insignificantly changing values of the parameters α and β, the calculated wear values coincide at the end of the loading block, regardless of the order of loads (increasing, decreasing or arbitrarily changing) and the duration of the loading stage. While with a significant difference between the parameters α and β, the coincidence of the calculated wear values at the end of the loading block appears only for a short duration of the loading stage (approximately two orders of magnitude less than the estimated lifetime). A comparison of the calculated wear kinetic curves is made under regular and irregular loading with an operating time of 2.0·107 cycles.
Keywords active system, reel support bearing, durability, mechano-sliding fatigue, irregular loading
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Bibliography
  1. Bogdanovich A.V. Prognozirovanie predelnykh sostoyaniy silovykh sistem [Prediction of limit states of active systems]. Grodno, Grodnenskiy gosudarstvennyy universitet Publ., 2008. 371 p. (in Russ.).
  2. Lis I.N., Bogdanovich A.V. Prognozirovanie dolgovechnosti silovoy sistemy, rabotayushchey v usloviyakh friktsionno-mekhanicheskoy ustalosti, na primere podshipnika kolenchatogo vala [Prediction of the active system durability operating under mechano-sliding fatigue using the example of a crankshaft bearing]. Aktualnye voprosy mashinovedeniya, 2021, iss. 10, pp. 129–135 (in Russ.).
  3. Petrovets V.R., Dudko N.I., Samsonov V.L. Tekhnologicheskiy protsess, nastroyka, regulirovka i kontrol kachestva raboty zernouborochnykh kombaynov [Technological process, adjustment, regulation and quality control of combine harvesters]. Gorki, Belorusskaya gosudarstvennaya selskokhozyaystvennaya akademiya Publ., 2012. 56 p. (in Russ.).
  4. Dyachenko A.D., Bednarsky V.V., Kolomytsa V.A., Layko D.V. Eksperimentalnye issledovaniya silovogo vozdeystviya na rabochie organy i privody zernouborochnykh kombaynov [Experimental studies of the power impact on working bodies and drives of combine harvesters]. Nauchnyy zhurnal Rossiyskogo NII problem melioratsii, 2016, no. 3(23), pp. 152–165 (in Russ.).
  5. Khodosevich V.I., Radishevskiy G.A., Kuzmitskiy A.V., Stashinskiy R.S., Avlasenko T.V. Opredelenie osnovnykh parametrov nastroyki i proizvoditelnosti zernouborochnogo kombayna [Determination of the main settings and performance parameters of the combine harvester]. Minsk, Belorusskiy gosudarstvenyy agrarno-tekhnichreskiy universitet Publ., 2007. 56 p. (in Russ.).
  6. TU BY 190526813.001-2015. Kaprolon [Caprolon]. Minsk, Belorusskiy gosudarstvenyy institut standartizatsii i sertifikatsii, 2015. 8 p. (in Russ.).
  7. Sosnovskiy L.A. Statisticheskaya mekhanika ustalostnogo razrusheniya [Statistical mechanics of fatigue failure]. Minsk, Nauka i tekhnika Publ., 1987. 287 p. (in Russ.).
  8. Kogaev V.P., Makhutov N.A., Gusenkov A.P. Raschety detaley mashin na prochnost i dolgovechnost [Calculations of machine parts for strength and durability]. Moscow, Mashinostroenie Publ., 1985. 223 p. (in Russ.).
  9. Reshetov D.N. Mashinostroenie. T. 4-1. Detali mashin. Konstruktsionnaya prochnost. Trenie, iznos, smazka [Mechanical engineering. Vol. 4-1. Machine parts. Structural strength. Friction, wear, lubrication]. Moscow, Mashinostroenie Publ., 1995. 863 p. (in Russ.).
  10. Kogaev V.P., Drozdov Yu.N. Prochnost i iznosostoykost detaley mashin [Strength and wear resistance of machine parts]. Moscow, Vysshaya shkola Publ., 1991. 318 p. (in Russ.).
  11. Troshchenko V.T., et al. Soprotivlenie materialov deformirovaniyu i razrusheniyu. Chast 2 [Resistance of materials to deformation and destruction. Part 2]. Kiev, Nauchnaya mysl Publ., 1994. 701 p. (in Russ.).
  12. Sosnovskiy L.A. Osnovy tribofatiki. Tom 2 [Fundamentals of tribo-fatigue. Volume 2]. Gomel, Belorusskiy gosudarstvenyy universitet transporta, 2003. 234 p. (in Russ.).
  13. Sosnovskiy L.A. Tribofatika: isnosoustalostnye povrezhdeniya v problemakh resursa i bezopasnosti [Tribo-fatigue: wear-resistant damages in lifetime and safety problems]. Moscow–Gomel, NPO TRIBOFATIKA” Publ., FTsNTP “Bezopasnost” Publ., 2000. 304 p. (in Russ.).
  14. State Standard 30638-99. Tribofatika. Terminy i opredeleniya [Tribo-fatigue: terms and definitions]. Minsk, Mezhgosudarstvennyy sovet po standartizatsii, metrologii i sertifikatsii Publ., 1999. 24 p. (in Russ.).
  15. Lis I.N., Bogdanovich A.V. Eksperimentalnoe issledovanie zakonomernostey obratnogo effekta metallopolimernoy silovoy sistemy pri friktsionno-mekhanicheskoy ustalosti [Experimental study of the regularities of the reverse effect of a metal-polymer active system under mechano-sliding fatigue]. Trudy 6 Mezhdunarodnogo simpoziuma po tribofatike MSTF 2010 “Tribofatika” [Proc. 6th International symposium on tribo-fatigue ISTF 2010 “Tribo-fatigue”]. Minsk, 2010, part 1, pp. 707–712 (in Russ.).
  16. Anurev V.I. Spravochnik konstruktora-mashinostroitelya. T. 2 [Handbook of a mechanical engineer designer. Vol. 2]. Moscow, Mashinostroenie Publ., 2001. 900 p. (in Russ.).
  17. Troshchenko V.T., Koval Yu.I. Zakonomernosti nakopleniya ustalostnogo povrezhdeniya v stalyakh 45 i 1Kh13 v usloviyakh programmnogo izmeneniya nagruzki [Patterns of accumulation of fatigue damage in steels 45 and 1X13 (1Kh13) under conditions of programmed load change]. Problemy prochnosti, 1973, no. 12, pp. 9–15 (in Russ.).
  18. Troshchenko V.T. Prochnost metallov pri peremennykh nagruzkakh [Strength of metals under variable loads]. Kiev, Nauchnaya mysl Publ., 1978. 176 p. (in Russ.).
  19. Savkin A.N. Raschetno-eksperimentalnye metody otsenki rasseyannykh povrezhdeniy v metalle i detalyakh mashin pri regulyarnoy i neregulyarnoy peremennoy zagruzhennosti. Avtoref. diss. dokt. tekhn. nauk [Computational and experimental methods for assessing scattered damage in metal and machine parts with regular and irregular variable load. Extended Abstract of D. Sc. Thesis]. Saratov, 2008. 40 p. (in Russ.).