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2024/25 ACADEMIC YEAR

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WINNER OF CFD CATEGORY❗🏆

FLUIDISED BED MODELLING AND SIMULATION

LEVENTE SÓLYOM


The aim of the research was to simulate the fluidization process using ANSYS Fluent software. The analysis was performed to study the two-phase flow in a fluid bed at different inlet gas velocities. Validation of the simulation results was carried out using a laboratory-scale fluidization unit.

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WINNER OF POLYMER CATEGORY❗🏆

APPLICATION OF MOLDING SIMULATION IN THE REDESIGN OF RAILWAY BRAKE METAL COMPONENT TO PLASTIC

FERENC KOVÁCS


The aim of the project work was to apply the tool of molding simulation in the redesign of a railway metal component to a plastic component. Additionally, a simulation-based comparison was made between the flatness of the critical contact surfaces of two redesigned component variants.

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WINNER OF MECHANICAL CATEGORY❗🏆

SIMULATION AND ANALYSIS OF REINFORCED CONCRETE COLUMNS STRENGTHENED WITH STEEL CAGE

VIKTOR FÁBIÁN


The aim of the research was to analyse the behaviour of reinforced concrete (RC) columns strengthened with steel cages and to explore how this behaviour can be simulated in ANSYS.

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FINITE ELEMENT MODELING OF FURNITURE STRUCTURES MADE FROM UNDERUTILIZED WOOD SPECIES

ZSÓFIA BENEDEK-CSÁNYI


The aim of the projectwork was to investigate, using the Finite Element Method, whether furniture structures made from underutilized wood species – considering only a subset of their mechanical properties – are suitable for use in the furniture industry.

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REDESIGN OF DMC-12

KÁROLY DONKÓ


The objectives of this project were: to reconsider a reborn brand and form; to test the latest technologies in industrial design; to combine traditional design techniques; to diversify the design; to prioritize and validate; and finally, to execute a complete design cycle.

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DESIGN AND DEVELOPMENT OF A FORMULA STUDENT RACE CAR’S SUSPENTION SYSTEM

PÉTER KISS MÁRTON


The goal of the thesis was to develop the components of the new generation Formula Student Race car at Óbuda University Racing Team. After the design phase all parts were validated in ANSYS Mechanical.

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FINITE ELEMENT CALCULATION OF THE NATURAL FREQUENCY OF A GRIPPER

MARCELL VERESS


The project focuses on the modal analysis of a gripper designed for a shaker used in the vibration diagnostic laboratory of Ecotech Nonprofit Zrt. The analysis was conducted using ANSYS software to examine the gripper’s natural frequencies and vibration modes, ensuring its stability and suitability for vibration testing processes.

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