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Konstrukcijska modifikacija sestave električnega kuhališča
ID Kumperger, Matej (Author), ID Žerovnik, Andrej (Mentor) More about this mentor... This link opens in a new window, ID Kunc, Robert (Comentor)

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Abstract
V magistrski nalogi je predstavljen proces konstrukcijske modifikacije električnega kuhališča s ciljem skrajšanja časa operacije sestave steklokeramike in nosilne plošče na proizvodni liniji. Najprej je predstavljeno kuhališče, na katerem se izvaja modifikacija. Sledi pregled stanja na trgu in pregled intelektualne lastnine, ki ščiti inovacije, povezane s sestavo kuhališč. Razvoj se prične z definicijo zahtev. V nadaljevanju so računsko in eksperimentalno določene obremenitve, ki so jim izpostavljene komponente sestava steklokeramike in nosilne plošče. Predstavljena je osnovna ideja modifikacije in njeno iterativno izboljšanje. Izdelan in predstavljen je natančen geometrijski model modificiranega kuhališča. Ustreznost modificirane oblike nosilca v kombinaciji z izbranim materialom je preverjena z napetostno deformacijsko analizo po MKE. Računsko je utemeljena tudi ekonomska smiselnost vpeljave modifikacije. Rezultat magistrske naloge je izdelan prototip kuhališča z modifikacijo, ki omogoča hitrejšo sestavo in znižanje stroškov izdelave kuhališča.

Language:Slovenian
Keywords:kuhališče, indukcija, napetostno deformacijska analiza, konstruiranje
Work type:Master's thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2024
PID:20.500.12556/RUL-164489 This link opens in a new window
Publication date in RUL:27.10.2024
Views:73
Downloads:24
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Secondary language

Language:English
Title:Modification of the electric hob assembly concept
Abstract:
The master’s thesis presents the process of modifying an electric hob assembly concept with the aim of shortening the operation time of assembling the glass-ceramic and the base plate on the production line. Firstly, the hob that is being modified is presented. This is followed by an overview of solutions found on the market and an overview of intellectual property. The design process starts with specifying the requirements. Loads on the assembly components are determined through calculations and experiments. The basic idea of the modification and its iterative improvements are presented. An accurate 3D model of the hob with the implied modification is created. Stress-strain analysis using FEM is used to confirm the design and material of the holder. Economic impact analysis of introducing the modification is also executed. The result of the master’s thesis is a prototype of the hob that enables faster assembly in production and reduces production costs.

Keywords:hob, induction, stress-strain analysis, design

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