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Napetostno-deformacijska stanja pri naleganju jeklene kotalke na profil iz aluminijeve zlitine, ojačan z jeklenimi trakovi
ID Višnjar, David (Author), ID Jerman, Boris (Mentor) More about this mentor... This link opens in a new window

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Abstract
V magistrskem delu se osredotočamo na napetostno-deformacijska stanja pri naleganju jeklene kotalke na jeklen trak, ki je podprt s profilom iz aluminijeve zlitine. Za namen določitve napetostno-deformacijskih stanj so bile izvedene numerične analize po metodi končnih elementov. V teoretičnem delu so najprej predstavljene mehanske lastnosti uporabljenih materialov in izzivi pri njihovi souporabi, nato Hertzeva kontaktna teorija in nazadnje določitev statične nosilnosti kotalnih elementov po standardu SIST ISO 14728-2:2020. V poglavju metodologija so predstavljene upoštevane predpostavke, skupaj s postopkom priprave numeričnih modelov. Rezultati vsebujejo prikaz napetostno deformacijskih stanj posameznih iteracij optimizacije konstrukcije skupaj z opažanji o vplivu sprememb na nosilnost. V zadnjem delu sledijo še zaključki, kjer so povzeti rezultati in spoznanja ter podani predlogi za nadaljnje delo.

Language:Slovenian
Keywords:metoda končnih elementov, kotalni elementi, Hertzeva kontaktna teorija, kontakt valj- ravnina, statična nosilnost
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2025
Number of pages:XX, 66 str.
PID:20.500.12556/RUL-171367 This link opens in a new window
UDC:620.172.21:621.867.6(043.2)
COBISS.SI-ID:246798083 This link opens in a new window
Publication date in RUL:23.08.2025
Views:217
Downloads:44
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Secondary language

Language:English
Title:Stress-strain analysis of the contact between a steel roller and an aluminium alloy profile, reinforced with steel strips
Abstract:
In this master thesis we deal with the stress-strain states that occur between a steel roller and a steel strip supported by an aluminium alloy profile. To determine the stress-strain states, numerical analyses were carried out using the finite element method. In the theoretical part, the mechanical properties of the used materials and the challenges of their combined use are presented, followed by Hertzian contact theory and the determination of the static load capacity of rolling elements according to the SIST ISO 14728-2:2020 standard. In the methodology chapter, the assumptions and the process of creating the numerical models are presented. The results include a presentation of the stress-strain states of the individual iterations of the structural optimization and considerations of the effects of design changes on load capacity. Finally, the conclusions summarize the results and findings and contain suggestions for further work.

Keywords:finite element method, rolling element, Hertz contact theory, cylinder-plane contact, static load rating

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