Systems. Methods. Technologies 3 (39) 2018

Systems Methods Technologies. Q.T. Vuong et al. Mechanisms in the structure … 2018 № 3 (39) p. 13-18 18 бенности учета динамических свойств, задачи вибрацион- ной защиты машин, приборов и оборудования. Иркутск, 2013. 187 с. Деп. в ВИНИТИ РАН 15.08.2013, № 243 – В 2013. 16. Белокобыльский С.В., Мамаеев Л.А., Кашуба В.Б., Ситов И.С. Вибрационная технологическая машина с управ- ляемым динамическим состоянием для поверхностной обра- ботки упруговязкопластичных сред // Современные наукоем- кие технологии. 2009. № 1. С. 5. 17. Елисеев С.В., Артюнин А.И. Прикладная теория коле- баний в задачах динамики линейных механических систем. Новосибирск: Наука, 2016. 459с. References 1. Panovko G.Ya. Dynamic of vibrational technological processes: monogr. M., Izhevsk: NIC «Regulyarnaya i haoticheskaya dinamika», In-t komp'yuternyh issledovanij, 2006. 176 p. 2. Kopylov Yu.R.Dynamic of the processes of vibro-impact hardening. Voronezh: Nauchnaya kniga, 2011. 568 p. 3. Blekhman I.I. Vibration mechanic. M.: Nauka, 1994. 394 p. 4. Eliseev A.V., Sel'vinskij V.V., Eliseev S.V.Dynamics of vibrational interactions of elements of technological systems with allowance for non-retentive links. Novosibirsk: Nauka, 2015. 332 p. 5. Eliseev S.V., Lukyanov A.V., Reznik Yu.N., Khomenko A.P. Dynamics of mechanical systems with additional ties. Ir- kutsk: Irkutsk State University, 2006. 315 p. 6. Eliseev S.V., Reznik Yu.N., Homenko A.P., Zasyadko A.A.Dynamical synthesis in generalized problems of vibration protection and vibration isolation of technical objects. Irkutsk: Izd-vo IGU, 2008. 523 p. 7. Clarence W. Vibration. Fundamentals and Practice. Boca Raton, London, New York, Washington, D.C.: CRC Press, 2000. 957 p. 8. Karnovsky I.A., Lebed E. Theory of vibration protection. Switzerland: Springer, 2016. 708 p. 9. Stepanov V.M., Do N.I. Generalized mathematical model of vibrating screen // Izvestiya Tula State University. Technical sciences. 2011. Vyp. 6., Ch. 1. P. 246-251. 10. Franchuk V.P. Engineering methods for calculating and selecting the dynamic parameters of vibrating screens, conveyors, feeders // Dnepropetrovsk: Zbagachennya korisnih kopalin. Nau- kovo-tekhnichnij zbirnik. 2001. № 12 (53). P. 126-143. 11. Dyatchin V.Z., Lshenko V.I., Franchuk V.P.Improvement of screens for the mining industry // Metall Inform. 2017. № 32- 33. P. 12-15. 12. Usenko N.A., Fam H.H., Sviridov A.A. Structural and mathematical systhesis many massenet vibrating charging devices with separate excitation of vibrations // Izvestiya Tula State Uni- versity. Technical sciences. 2015. Vyp. 4. P. 52-60. 13. Bograd A., Nerubenko G., Nerubenko S. Energy Harvest- ing in vehicle’s drive // Proceeding of the 2-nd International con- ference of Energy Harvesting, Storage, and Transfers (EHST’18). Niagara Falls, Canada. June 7-9. 2018, P. 112-1-112-9. 14. Antipov V.I., Dencov N.N., Koshelev A.V.Dynamics of a parametrically excited vibrating machine with an isotropic elastic system // Fundamental research. 2014. № 8.,CH. 5. P. 1037-1042. 15. Homenko A.P., Artyunin A.I., Parshuta E.A., Kai- mov E.V. Mechanisms in elastic oscillatory systems: peculiarities of dynamic properties, tasks of vibration protection of machines, devices and equipment. Irkutsk, 2013. 187 p. Dep. v VINITI RAN 15.08.2013, № 243 - V 2013. 16. Belokobyl'skij S.V., Mamaeev L.A., Kashuba V.B., Si- tov I.S. Vibrating technological machine with controlled dynamic state for surface treatment of elastoviscoplastic environments // Modern High Technologies. 2009. № 1. P. 5. 17. Eliseev S.V., Artyunin A.I.Applied theory of oscillations in problems of dynamic of linear mechanical systems. Novosi- birsk: Nauka, 2016. 459p.

RkJQdWJsaXNoZXIy MTk0ODM1