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Uporaba metod dinamskega podstrukturiranja pri razvoju vpenjal za vibracijske teste
ID Hadalin, Anže (Author), ID Česnik, Martin (Mentor) More about this mentor... This link opens in a new window

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Abstract
V zaključnem delu je obravnavana problematika določitve dinamskega odziva sestavljenih kompleksnih struktur preko frekvenčnega sklapljanja podstruktur. Glavni namen te naloge je napoved odziva testne strukture, ki bo preko vpetja na vpenjalu podvržena vibracijskim testiranjem. V delu predstavimo temeljno teorijo osnovnih modelov dinamskih sistemov t.j. prostorski, modalni ter odzivni model. Nadalje opišemo teoretične osnove dinamskega podstrukturiranja ter predstavimo metode sklapljanja podstruktur. Naloga se podrobneje osredotoči na analizo sklapljanja podstruktur z uporabo virtualnih točk, kjer ločeno obravnava dinamiko stičnih prostostnih stopenj podstruktur ter jih nato združi v dinamiko ene sklopljene strukture. Napoved frekvenčne prenosne funkcije je izvedena z uporabo metod dinamskega podstrukturiranja, kjer referenco predstavlja numerična simulacija v programu ANSYS. Rezultati predstavijo dinamiko sestavljenega sistema z uporabo večjega števila virtualnih točk pri popisu kontakta podstruktur ter ujemanje napovedi z referenčno metodo.

Language:Slovenian
Keywords:numerična modalna analiza, frekvenčna prenosna funkcija, merjenje FRF, sklapljanje podstruktur, stične nihajne oblike, transformacija v virtualno točko
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[A. Hadalin]
Year:2023
Number of pages:XXIV, 66 str.
PID:20.500.12556/RUL-148986 This link opens in a new window
UDC:534.1:534.011:004.94(043.2)
COBISS.SI-ID:166188547 This link opens in a new window
Publication date in RUL:02.09.2023
Views:759
Downloads:32
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Secondary language

Language:English
Title:Application of dynamic substructuring methods in the development of vibration-test fixation elements
Abstract:
This thesis researches methods for predicting dynamic behaviour of complex structures using frequency based substructuring. The primary goal is to predict a dynamic response of a test structure, mounted on fixture elements, all of which will be subjected to vibration tests. Underlying theory in formation of analytical models i.e. spatial, modal and response model are presented. Furthermore, the thesis focuses on theoretical basics of dynamic substructuring and corresponding methods, developed to adress the challenges with structures, that are too big and complex for a classic approach. A method of coupling substructures using virtual point transformation is elaborated in more detail, and an assessment is made using multiple virtual points to perform coupling. Prediction of dynamic response is made using dynamic substructuring coupling, with reference to numerical model in ANSYS. Results show the dynamic response of coupled structure using multiple virtual points in relation to the reference method.

Keywords:numerical modal analysis, frequency response function, FRF measurement, substructure coupling, interface deformation modes, virtual point transformation

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