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dc.contributor.authorBazhenov, E. E.en
dc.contributor.authorBuynachev, S. K.en
dc.contributor.authorChernyshev, D. O.en
dc.date.accessioned2019-09-20T15:19:31Z-
dc.date.available2019-09-20T15:19:31Z-
dc.date.issued2019-
dc.identifier.citationBazhenov, E. E. Mathematical modeling of oscillations of the associated transport and technological complex with the use of the graph theory / E. E. Bazhenov, S. Buynachev, D. O. Chernyshev // Lecture Notes in Mechanical Engineering. – 2019. – Iss. 9783319956299. – P. 645-653.en
dc.identifier.isbn978-3319-9562-99-
dc.identifier.issn2195-4356-
dc.identifier.urihttps://elar.usfeu.ru/handle/123456789/9020-
dc.description.abstractThe work of technological complexes is connected with specific operating conditions, especially when moving on temporary roads and off-road conditions. A new model was developed for the analysis of production machinery dynamical oscillation under attachable equipment influence. The developed model was divided into simple modules, which allowed us to use the graph theory for modeling. A special structure was created for the oscillation model which allowed us to take into consideration the main vehicle movement parts, objects of internal impact, and attachable equipment influence. The most important idea of a coupling transport oscillation model was the center of mass modeling. This approach showed that the most important role in decreasing of oscillation decay time is suspension characteristics. Using mainly the experimental technique of proelastic suspension properties and coupling active nodes, you can minimize the machine body frame oscillation decay time. As the calculation shows, the oscillation decay time can be reduced by more than two times with simple adding of the second trailer unit. A modular modeling principle of complex dynamic systems allows solving complicated technological transportation systems with any structure. This approach allows us to predict complex dynamic systems behavior and take into consideration different types of external dynamic forces without expensive experiments. © 2019, Springer Nature Switzerland AG.en
dc.language.isoenen
dc.publisherPleiades Publishingen
dc.rightsinfo:eu-repo/semantics/restrictedAccessen
dc.sourceLecture Notes in Mechanical Engineeringen
dc.subjectCOUPLING OF TRANSPORT TECHNOLOGICAL SYSTEM AND HANDLING EQUIPMENTen
dc.subjectDYNAMICAL MODELen
dc.subjectGRAPH THEORYen
dc.subjectOBJECT-ORIENTED MODELINGen
dc.subjectPRODUCTION MACHINERY OSCILLATIONen
dc.titleMathematical modeling of oscillations of the associated transport and technological complex with the use of the graph theoryen
dc.typeBook Chapteren
dc.typeinfo:eu-repo/semantics/publishedVersionen
local.description.firstpage645-
local.description.lastpage653-
local.issue9783319956299-
local.identifier.doi10.1007/978-3-319-95630-5_67-
local.affiliationUral State Forest Engineering University, Siberian Highway 37, Ekaterinburg, 620100, Russian Federationen
local.affiliationUral Federal University First President of the Russian Federation B.N. Yeltsin, 19, Mira Street, Ekaterinburg, 620002, Russian Federationen
local.contributor.employeeBazhenov, E., Ural State Forest Engineering University, Siberian Highway 37, Ekaterinburg, 620100, Russian Federation-
local.contributor.employeeBuynachev, S., Ural Federal University First President of the Russian Federation B.N. Yeltsin, 19, Mira Street, Ekaterinburg, 620002, Russian Federation-
local.contributor.employeeChernyshev, D., Ural State Forest Engineering University, Siberian Highway 37, Ekaterinburg, 620100, Russian Federation-
local.identifier.rsi38652625-
local.identifier.eid2-s2.0-85060080460-
local.identifier.ednBIWSQR-
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