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Zasnova preizkuševališča za karakterizacijo dinamskega odziva rotacijskih naprav
ID Protič, Marko (Author), ID Čepon, Gregor (Mentor) More about this mentor... This link opens in a new window, ID Boltežar, Miha (Co-mentor)

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Abstract
V delu je predstavljen potek zasnove preizkuševališča za karakterizacijo dinamskega odziva rotacijskih naprav. Prikazan je razvoj numeričnega modela, od posamičnih struktur do sklopljenega sistema. Obravnavana kroglična ležaja smo poenostavljeno modelirali prek prostorske togostne matrike, ki je rezultat matematično formuliranega modela tega strojnega elementa. Pri tem, je bil glavni poudarek na raziskavi načina implementiranja togostne matrike v MKE model, v programskem okolju ANSYS Workbench. Za namen validacije numeričnega modela, smo izdelali tudi preizkuševališče, ki smo ga parcialno ovrednotili s postopkom eksperimentalne modalne analize. Zaradi kompleksnosti sistema, smo dodatno še raziskali načine izboljšanja rezultatov MKE modelov. To smo izvedli preko identifikacije materialnih lastnosti posameznih strukturnih segmentov, kot tudi implementacije različnih načinov modeliranja sklopljenih struktur.

Language:Slovenian
Keywords:Preizkuševališče, numerična simulacija, analitični model, kroglični ležaj, identifikacija, materiala, sklapljanje
Work type:Master's thesis
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Publisher:[M. Protič]
Year:2018
PID:20.500.12556/RUL-102870 This link opens in a new window
UDC:519.876.5:621.825(043.2)
COBISS.SI-ID:16426267 This link opens in a new window
Publication date in RUL:09.09.2018
Views:1456
Downloads:459
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Secondary language

Language:English
Title:Design of a test bench for the characterization the the dynamic response of rotary devices
Abstract:
This thesis presents the process of designing a test bench for the characterisation of a dynamic response of rotary machines. The process of numerical model construction, from individual structures to a coupled system, is presented. The ball bearings are simplified through a spatial stiffness matrix, which is the result of the mathematically formulated model of this machine element. The main focus was on implementation of the bearing matrix in the FEM model, in the ANSYS Workbench environment. For the purpose of validation, the experiments were conducted on parts of the structure using experimental modal analysis. Due to the complexity of the system, the various possibilities to improve FEM model were investigated. The improvements were oriented towards the identification of the material properties of the individual structural segments, as well as the research of different ways of modelling the coupled structures.

Keywords:experimental setup, numerical simulation, analytical model, ball bearing, identification of material, coupling

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