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Analiza vpliva oblike dušilnega elementa na njegovo togost in sposobnost dušenja vibracij
ID Voršič, Maj (Author), ID Oman, Simon (Mentor) More about this mentor... This link opens in a new window, ID Nagode, Marko (Comentor)

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Abstract
Vibracije, ki nastajajo pri obratovanju železniške infrastrukture, predstavljajo pomemben izziv pri zagotavljanju stabilnosti tirnih konstrukcij in udobja potnikov. Z vidika preprečevanja resonančnih pojavov pri spremenljivih obratovalnih obremenitvah je zaželen dušilni element s progresivno togostno karakteristiko, ki ohranja lastno frekvenco sistema v ozkem območju. V magistrski nalogi je predstavljena numerična raziskava elastomernega dušilnega elementa v programskem paketu Abaqus z uporabo osnosimetrične formulacije končnih elementov. Raziskava je razdeljena v štiri faze: primerjavo osnovnih geometrijskih oblik z linearnim materialnim modelom, analizo z Ogdenovim hiperelastičnim modelom s histereznim prispevkom, modalno analizo v odvisnosti od predobremenitve in parametrično študijo dvofaznega modela s katenoidno steno. Med obravnavanimi oblikami sta valj in prisekani stožec izkazala linearno, polkrogla in katenoidni različici pa progresivno togostno karakteristiko. Modalna analiza je pokazala kvalitativno ujemanje numeričnih in eksperimentalnih rezultatov ter stabilizacijski učinek progresivne togosti katenoidne oblike. Parametrična študija dvofaznega modela je sistematično ovrednotila vpliv debeline stene, predobremenitve in amplitude vzbujanja na togost in dušilni faktor elementa.

Language:Slovenian
Keywords:dušilni elementi, železniška infrastruktura, metoda končnih elementov, histereza, dušilni faktorji, parametrična študija
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[M. Voršič]
Year:2026
Number of pages:XXII, 71 str.
PID:20.500.12556/RUL-185858 This link opens in a new window
UDC:534:656.2(043.2)
COBISS.SI-ID:288612611 This link opens in a new window
Publication date in RUL:21.08.2026
Views:159
Downloads:72
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Secondary language

Language:English
Title:Analysis of the influence of a damping element's shape on its stiffness and vibration damping capability
Abstract:
Vibrations generated during the operation of railway infrastructure pose a significant challenge in ensuring the stability of track structures and passenger comfort. From the standpoint of preventing resonance phenomena under variable operating loads, a damping element with a progressive stiffness characteristic is desirable, as it keeps the natural frequency of the system within a narrow range. This master’s thesis presents a numerical investigation of an elastomeric damping element in the Abaqus software package using an axisymmetric finite element formulation. The research is divided into four phases: a comparison of basic geometric shapes using a linear material model, an analysis using the Ogden hyperelastic model with a hysteresis contribution, a modal analysis as a function of preload, and a parametric study of a two-phase model with a catenoid wall. Among the shapes considered, the cylinder and the truncated cone exhibited a linear stiffness characteristic, whereas the hemisphere and the catenoid variants exhibited a progressive one. The modal analysis showed qualitative agreement between the numerical and experimental results, as well as the stabilizing effect of the progressive stiffness of the catenoid shape. The parametric study of the two-phase model systematically evaluated the influence of wall thickness, preload, and excitation amplitude on the stiffness and damping factor of the element.

Keywords:damping elements, railway infrastructure, finite element method, hysteresis, damping factors, parametric study

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