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Mikrotrdota v zvarnih spojih raznorodnih visokotrdnostnih aluminijevih zlitin
ID Margon, Uroš (Author), ID Trdan, Uroš (Mentor) More about this mentor... This link opens in a new window, ID Klobčar, Damjan (Co-mentor)

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Abstract
V zaključni nalogi smo obravnavali mehanske lastnosti aluminijevih zlitin za gnetenje za uporabo v transportni industriji. Osredotočili smo se na trdnostne lastnosti, pridobljene po postopku varjenja s trenjem in mešanjem. V eksperimentalnem delu smo za zvarni spoj zlitine 2017A-T451 in 7075-T651, varjene pod različnimi pogoji, izvedli meritve hrapavosti in valovitosti ter izmerili mikrotrdoto v preseku zvarnega mesta. Nato smo poiskali povezave med izmerjenimi vrednostmi in varilnimi parametri. Izbrani vzorec smo pogledali pod mikroskopom ter opravili makro-in mikrostrukturno analizo. Najdene ekstremne vrednosti mikrotrdote smo na koncu primerjali s proučevanimi mikrostrukturnimi značilnostmi. Meritve hrapavosti so pokazale, da se nahaja največji aritmetični odstopek profila v smeri potovanja orodja, in sicer ob pogoju podajanja na obrat 25 vrt/cm pri vrednosti 5,4 µm. Najvišje vrednosti trdote so bile izmerjene pri vzorec s podajanjem na obrat 16 vrt/cm v zgornjem delu zvara v coni mešanja, in sicer pri okoli 170 HV0,2, medtem ko je bila najnižje izmerjena trdota pri istem vzorcu v spodnjem delu zvara v toplotno vplivanemu področju, in sicer na strani zvara z zlitino 7075 v vrednosti 96 HV0,2.

Language:Slovenian
Keywords:mikrotrdota, visokotrdnostne aluminijeve zlitine, varjenje s trenjem in mešanjem, topografija, mikrostruktura, makrostruktura
Work type:Final paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Publisher:[U. Margon ]
Year:2018
PID:20.500.12556/RUL-103336 This link opens in a new window
UDC:539.4.01+620.179.2(043.2)
COBISS.SI-ID:16235035 This link opens in a new window
Publication date in RUL:16.09.2018
Views:2287
Downloads:338
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Secondary language

Language:English
Title:Microhardness in Dissimilar High-Strength Aluminium Alloy Welds
Abstract:
In this study we investigated the mechanical properties of wrought aluminium alloys for transportation industry use. We focused on the strength properties, obtained by the friction stir welding process. In the experimental part, we took measurements of surface roughness and waveviness of friction stir welded joints in 2017A-4 and 7075-T6 aluminium alloys that were welded using different welding parameters. We also measured the microhardness profile through the transverse cross-section of butt joints. After finding the correlation between measured values and the welding process parameters, macroscopic and microscopic analyses for the chosen specimen were performed. Then we investigate the possible correlation between measured microhardness extremes and microstructure properties. The topography analysis showed us that the highest value of mean roughness (5,4 µm) was observed in the direction parallel to the welding direction in the area where welding process at a feed per revolution of 25 rev/cm took place. The maxima of microhardness were observed at the upper layer of the welding sample that was welded at a feed per revolution of 16 rev/cm with a value of 170 HV0,2. In the lower layer of the same specimen, the minimum of 96 HV0,2 was measured.

Keywords:Microhardness, High-strength aluminium alloys, Friction stir welding, Topography, Microstructure, Macrostructure

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