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Vpliv homogenizacijskega žarjenja na preoblikovalnost zlitine EN AW-7020 : magistrsko delo
ID Kropec, Melanja (Author), ID Vončina, Maja (Mentor) More about this mentor... This link opens in a new window, ID Steinacher, Matej (Comentor)

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Abstract
V magistrskem delu je bil proučen vpliv homogenizacijskega žarjenja na preoblikovalnost aluminijeve zlitine EN AW-7020. Namen raziskave je bil opredeliti optimalno temperaturo in čas homogenizacije, ki omogočata ustrezno kombinacijo mikrostrukture in mehanskih lastnosti za uspešno nadaljnje plastično preoblikovanje. Eksperimentalno delo je zajemalo homogenizacijo zlitine v litem stanju pri temperaturah 470 °C in 490 °C v časovnih intervalih med 3–10 urami. Napoved mikrostrukturne sestave je bila izvedena z uporabo programskega orodja Thermo-Calc. Definiranje solidus temperature je potekalo s pomočjo diferenčne vrstične kalorimetrije. Mikrostrukturne spremembe so bile analizirane z optično in vrstično elektronsko mikroskopijo, pri čemer so bile z uporabo energijsko disperzijske spektroskopije identificirane posamezne faze. Kvantifikacija velikosti kristalnih zrn je bila izvedena po standardu ASTM E112. Preoblikovalnost je bila ovrednotena s tlačnimi preizkusi na simulatorju metalurških stanj Gleeble 3500-GTC, s pomočjo katerih so bile izrisane krivulje tečenja in opredeljene meje tečenja. Rezultati so pokazali, da se z daljšim časom in višjo temperaturo homogenizacije zvišujeta solidus temperatura in meja tečenja, hkrati pa prihaja tudi do neželene rasti kristalnih zrn. Optimalen režim homogenizacije je bil definiran pri temperaturi 490 °C in času pet ur, saj ta omogoča dobro raztapljanje faz, primerno solidus temperaturo in hkrati ohranjanje fine mikrostrukture ter nizko napetost med deformacijo, kar omogoča najboljše pogoje za nadaljnjo preoblikovanje zlitine EN AW-7020.

Language:Slovenian
Keywords:aluminijeva zlitina EN AW-7020, termodinamika faznih ravnotežij, homogenizacija, mikrostruktura, preoblikovalne lastnosti
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:NTF - Faculty of Natural Sciences and Engineering
Place of publishing:Ljubljana
Publisher:M. Kropec
Year:2025
Number of pages:XV, 53 f.
PID:20.500.12556/RUL-173950 This link opens in a new window
UDC:669
COBISS.SI-ID:257237251 This link opens in a new window
Publication date in RUL:25.09.2025
Views:125
Downloads:29
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Secondary language

Language:English
Title:Influence of homogenization annealing on formability of EN AW-7020 alloy : master's thesis
Abstract:
In this master's thesis, the effects of homogenization annealing on the formability of the aluminium alloy EN AW-7020 were investigated. The aim of the research was to determine the optimum homogenization temperature and time that provide a favourable combination of microstructure and mechanical properties for further plastic deformation. The experimental work involved the homogenization of cast alloy samples at 470 °C and 490 °C for a period of 3 to 10 hours. The prediction of the microstructural composition was carried out using Thermo-Calc software. The solidus temperature was defined using differential scanning calorimetry. Microstructural changes were analysed by optical and scanning electron microscopy, while individual phases were identified by energy dispersive X-ray spectroscopy. The grain size was quantified according to ASTM E112. Formability was assessed by compression tests using the physical simulation system Gleeble 3500-GTC, from which flow curves were obtained and yield strengths defined. The results showed that both the solidus temperature and the yield strength increased with longer homogenization times and higher temperatures, but this also led to undesirable grain growth. The optimum homogenization regime was found to be 490 °C for 5 hours, as it allowed adequate phase dissolution, achieved a suitable solidus temperature and maintained a fine microstructure and results in low stress during deformation, all of which contributed to conditions most favourable for the formability of the alloy EN AW-7020.

Keywords:EN AW-7020 aluminium alloy, thermodynamics of phase equilibria, homogenization, microstructure, forming properties

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