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dc.contributor.authorHevko, Ivan Bohdanovych-
dc.contributor.authorLyashuk, Oleg Leontiyovych-
dc.contributor.authorSokil, Maria-
dc.contributor.authorSlobodian, Lyubomyr-
dc.contributor.authorHud, Viktor-
dc.contributor.authorVovk, Yuriy Yaroslavovych-
dc.contributor.authorГевко, Іван Богданович-
dc.contributor.authorЛяшук, Олег Леонтійович-
dc.contributor.authorСокіл, Марія-
dc.contributor.authorСлободян, Любомир Михайлович-
dc.contributor.authorВовк, Юрій Ярославович-
dc.date.accessioned2019-10-11T19:01:15Z-
dc.date.available2019-10-11T19:01:15Z-
dc.date.issued2019-
dc.identifier.citationHevko, I.; Lyashuk, O.; Sokil, M.; Slobodian, L.; Hud, V.; Vovk, Yu. (2019). Resonant oscillation of vertical working part of conveyer-loader. Bulletin of the Karaganda University. Physics Series, 2(94)/2019, 73-81.uk_UA
dc.identifier.issn2518-7198-
dc.identifier.urihttp://elartu.tntu.edu.ua/handle/lib/28970-
dc.description.abstractThe experimental equipment for testing the screw loader of bulk materials with horizontal and vertical branches was designed and manufactured, which allows to determine the process productivity and power consumption according to the developed methods. Experimental equipment is equipped with laboratory equipment, which ensures the change of investigated processes in wide ranges with high accuracy in the automated control mode with the fixation of necessary research results. On the basis of mathematical models, the dependences of the angular velocity of perturbation on the physico-mechanical and geometric parameters of the system of branches and the angular velocity of SWP are obtained. It was established that the resonance dynamic stresses at significant angular velocities exceed several times the resonant stresses of a «static elastic body» (which does not rotate), which makes it possible to take into account when choosing a dynamic coefficient of strength. With the same physical-mechanical and geometric characteristics of an elastic body, the resonance for larger values of the angular velocity of its rotation takes place for a smaller frequency of external periodic perturbation.uk_UA
dc.format.extent73-81-
dc.language.isoenuk_UA
dc.publisherAcademician Ye.A. Buketov Karaganda State Universityuk_UA
dc.relation.urihttp://rmebrk.kz/journals/5303/94580.pdf#page=80uk_UA
dc.subjectmathematical modeluk_UA
dc.subjectamplitudeuk_UA
dc.subjectresonanceuk_UA
dc.subjectconveyoruk_UA
dc.subject.ddc10.31489/2019Ph2/73-81uk_UA
dc.titleResonant oscillation of vertical working part of conveyer-loaderuk_UA
dc.typeArticleuk_UA
dc.coverage.placenameKaragandauk_UA
dc.subject.udc621.867.42uk_UA
dc.relation.referencesen1 Vasilenko, P.M., & Vasilenko, I.I. (1985). Mekhanizatsiia i avtomatizatsiia protsessov prihotovleniia i dozirovaniia kormov [Mechanization and automation of the processes of cooking and dosing of fodders]. Moscow: Agropromizdat [in Russian]. 2 Gevko, B.M. (1987). Nauchnye osnovy razrabotki vintovykh transportiruiushchikh mekhanizmov selskokhoziaistvennykh mashin [Scientific bases of development of screw conveying mechanisms of agricultural machines]. Candidate’s thesis. Rostov-on- Don [in Russian]. 3 Gevko, B.M., & Rogatynsky, R.M. (1989). Vintovye podaiushchie mekhanizmy selskokhoziaistvennykh mashin [Screw feeding mechanisms of agricultural machines]. Lvov: Vysshaia shkola [in Russian]. 4 Zaika, P.M. (1958). O vybore parametrov vintovykh transporterov zernovykh kombainov [On the choice of parameters of screw conveyors of grain combines]. Selkhozmashiny — Farm Machines, 2, 22–24 [in Russian]. 5 Rogatinsky, R.M., Gevko, I.B., & Dmitrov, D.V. (2000) Modelirovanie raboty malohabaritnoho lopastno-vintovoho smesitelia [Modeling of the work of a small-sized lobed-and-screw mixer]. Selskokhoziaistvennye mashiny — Agricultural machines. Lutsk, 6, 129–135 [in Russian]. 6 Rogatinsky, R.M. (1997). Mekhaniko-tekhnolohicheskie osnovy vzaimodeistviia shnekovykh rabochikh orhanov s syrem selskokhoziaistvennoho proizvodstva [Mechanic-technological bases of interaction of screw working bodies with raw materials of agricultural production]. Candidate's abstract. Kiev [in Russian]. 7 Zuyev, I.M., Sorokin, E.P., & Shpyro, A.V. (1988). Montazh, ekspluatatsiia i remont mashin v zhivotnovodstve [Installation, operation and repair of machines in animal husbandry]. Moscow: Agropromizdat [in Russian]. 8 Alferov, K.V., & Zenkov R.L. (1975). Bunkernye ustanovki [Bunker installations]. Moscow: Mashinostroenie [in Russian]. 9 Zenkov, R.L. (1973). Mekhanika nasypnykh hruzov [Mechanics of bulk cargo]. Moscow: Mashinostroenie [in Russian]. 10 Zenkov, R.L. (1972). Bunkernye ustroistva [Bunker devices]. Moscow: Mashinostroenie [in Russian]. 11 Zenkov, R.L., Ivashkov I.I., & Kolobov L.N. (1987). Mashiny nepreryvnoho transporta [Machines of Continuous Transport]. Moscow: Mashinostroenie [in Russian]. 12 Grigoriev, A.M., & Preobrazhenskii, P.A. (1967). Kompleksnaia mekhanіzatsіia і avtomatizatsіia pohruzo-razhruzochnykh і transportnykh rabot v mashinostroenii і priborostroenii [Integrated mechanization and automation of cargo handling and transport works in mechanical engineering and instrument making]. Kiev: Naukova dumka [in Russian]. 13 Grigoriev, A.M. (1972). Vintovye konveiery [Screw Conveyors]. Moscow: Mashinostroenie [in Russian]. 14 Grigoriev, A.M., & Preobrazhenskii, P.A. (1967). Hibkie shneki [Flexible screw]. Kiev: Znanie [in Russian]. 15 Khailis, G.A. (1992). Osnovy teorii i rascheta selskokhoziaistvennykh mashin [Fundamentals of the theory and calculation of agricultural machines]. Kiev: USCA Publ. [in Russian]. 16 Plavinsky, V.I. (Ed.) (1969). Mashiny nepreryvnoho transporta [Machines of continuous transport]. Moscow: Mashinostroenie [in Russian]. 17 Ostapchuk, N.V. (1974). Optimizatsiia tekhnolohicheskikh protsesov na zemlepererabatyvaiushchikh predpriiatiiakh [Optimization of technological processes in land-processing enterprises]. Moscow: Kolos [in Russian]. 18 Ostapchuk, N.V. (1981). Osnovy matematicheskoho modelirovaniia protsessov pishchevykh proizvodstv [Fundamentals of Mathematical Modeling of Food Processes]. Kiev: Vishcha shkola [in Russian]. 19 Rogatinskaya, A.R. (2006). Obosnovanie parametrov nahruzki i konstruktsii vintovykh konveierov [Justification of the parameters of the load and structures of screw conveyors]. Candidate’s thesis. Ternopol [in Russian]. 20 Khorolsky, I.M. (1999). Dinamika tsepnykh sistem i zamknutykh konturov mashin nepreryvnoho transporta [Dynamics of chain systems and closed circuits of continuous transport machines]. Lvov: Izd. GU «Lvovskaia politekhnika» [in Russian]. 21 Babakov, I.M. (1965). Teoriia kolebanii [The theory of oscillations]. Moscow: Nauka [in Russian]. 22 Goroshko, O.A. (1978). O prodolnykh kolebaniiakh balki s podvizhnym ekipazhem [On the longitudinal oscillations of the beam with a moving crew]. Prikladnaia mekhanika — Applied Mechanics, 14, 8, 70–78 [in Russian]. 23 Dotsenko, P.D. (1971). O kolebaniiakh i ustoichivosti pryamolineinoho truboprovoda [On oscillations and stability of rectilinear pipeline]. Prikladnaia mekhanika — Applied Mechanics, 3, 85–91 [in Russian]. 24 Martyntsiv, M.P., & Sokol, M.B. (2003) Odno obobshchenie metoda D'Alambera dlia sistem, kotorye kharakterizuiutsia prodolnym dvizheniem [One generalization of the D'Alembert method for systems characterized by a longitudinal motion]. Nauchnyi vestnik — Scientific herald (Iss. 13.4). Lvov: UDLTIU, 64–67 [in Russian]. 25 Pavlovsky, M.A., & Putiata, T.V. (1985). Teoreticheskaia mekhanika [Theoretical mechanics]. Kiev: Vishcha shkola [in Russian]. 26 Nikiforov, S.N. (1966). Soprotivlenie materialov [Materials Resistance]. Moscow: Vysshaia shkola [in Russian]. 27 Mitropolsky, Yu.A., & Moseenkov, B.I. (1976). Asimptoticheskie resheniia uravnenii v chastnykh proizvodnykh [Asymptotic Solutions of Equations in Private Derivatives]. Kiev: Vishcha shkola [in Russian]. 28 Bogolyubov, N.N., & Mitropolsky, Yu.A. (1974). Asimptoticheskie metody v teorii nelineinykh kolebanii [Asymptotic methods in the theory of nonlinear oscillations]. Moscow: Nauka [in Russian]. 29 Lyashuk A.L., et al. (2018). Stend dlia issledovaniia perehruzki sypuchikh materialov s horizontalnoi na vertikalnuiu vetv [Stand for investigation of overload of bulk materials from horizontal to vertical branch]. Patent № 128019, Ukraine. Bulletin No. 16 [in Russian].uk_UA
dc.identifier.citationenHevko, I.; Lyashuk, O.; Sokil, M.; Slobodian, L.; Hud, V.; Vovk, Yu. (2019). Resonant oscillation of vertical working part of conveyer-loader. Bulletin of the Karaganda University. Physics Series, 2(94)/2019, 73-81.uk_UA
dc.identifier.doi10.31489/2019Ph2/-
dc.contributor.affiliationTernopil Ivan Puluj National Technical Universityuk_UA
Розташовується у зібраннях:Наукові публікації працівників кафедри транспортних технологій та механіки

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