Annealing effects in commercial aluminium hot-rolled 7075(-Sc-Zr) alloys
Identifikátory výsledku
Kód výsledku v IS VaVaI
<a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F00216208%3A11320%2F20%3A10420416" target="_blank" >RIV/00216208:11320/20:10420416 - isvavai.cz</a>
Nalezeny alternativní kódy
RIV/68407700:21220/20:00343936
Výsledek na webu
<a href="https://verso.is.cuni.cz/pub/verso.fpl?fname=obd_publikace_handle&handle=JDyUgCLJeN" target="_blank" >https://verso.is.cuni.cz/pub/verso.fpl?fname=obd_publikace_handle&handle=JDyUgCLJeN</a>
DOI - Digital Object Identifier
<a href="http://dx.doi.org/10.1007/s10973-020-10249-1" target="_blank" >10.1007/s10973-020-10249-1</a>
Alternativní jazyky
Jazyk výsledku
angličtina
Název v původním jazyce
Annealing effects in commercial aluminium hot-rolled 7075(-Sc-Zr) alloys
Popis výsledku v původním jazyce
In the present work, the effect of hot rolling (at temperature 300 °C/60 min) on mechanical, thermal properties, microstructure and recrystallization behaviour of the commercial AlZnMgCuFe(ScZr) (7075-Sc,Zr) alloys was investigated. Microhardness together with differential scanning calorimetry measurements was compared to microstructure development that was observed by transmission and scanning electron microscopy and electron backscatter diffraction. Microstructure observation proved two types of eutectic phase (T-phase and Mn,Fe,Si-containing phase) at (sub)grain boundaries in hot-rolled alloys. The grain size was ~ 20 μm in the AlZnMgCuFeScZr and ~ 1000 μm in the AlZnMgCuFe alloy. Sc,Zr-addition in hot-rolled AlZnMgCuFe(ScZr) alloys significantly refined the grains. Primary multilayer Al3(Sc,Zr) particles precipitated during casting and subsequent cooling in the alloy with Sc,Zr-addition. These particles were stable up to 450 °C. No changes of microhardness values (in accuracy of measurement) from room temperature up to 450 °C in the alloys were observed there. Thus, the probable presence of these secondary Al3(Sc,Zr) particles is most likely the reason of hardening (ΔHV ALMOST EQUAL TO 20) of the AlZnMgCuFeScZr alloy. A little higher electrochemical potential was measured for AlZnMgCuFeScZr alloy (- 1144 mV) than for AlZnMgCuFe alloy (- 1171 mV). One exothermic process was observed in hot-rolled alloys; apparent activation energy of this process was calculated as ~ 100 kJ mol-1. Additional precipitation and/or coarsening of S-phase together with precipitation of T-phase are probably connected with the exothermic process. Sc,Zr-addition has a significant antirecrystallization effect. No recrystallization was observed in the hot-rolled AlZnMgCuFeScZr alloy, neither after annealing at 350 °C/10 h nor after annealing at 450 °C/10 h. A partial recrystallization effect of the hot-rolled AlZnMgCuFe alloy is clearly registered after annealing at 350 °C/10 h and occurs very strongly after annealing at 450 °C/10 h.
Název v anglickém jazyce
Annealing effects in commercial aluminium hot-rolled 7075(-Sc-Zr) alloys
Popis výsledku anglicky
In the present work, the effect of hot rolling (at temperature 300 °C/60 min) on mechanical, thermal properties, microstructure and recrystallization behaviour of the commercial AlZnMgCuFe(ScZr) (7075-Sc,Zr) alloys was investigated. Microhardness together with differential scanning calorimetry measurements was compared to microstructure development that was observed by transmission and scanning electron microscopy and electron backscatter diffraction. Microstructure observation proved two types of eutectic phase (T-phase and Mn,Fe,Si-containing phase) at (sub)grain boundaries in hot-rolled alloys. The grain size was ~ 20 μm in the AlZnMgCuFeScZr and ~ 1000 μm in the AlZnMgCuFe alloy. Sc,Zr-addition in hot-rolled AlZnMgCuFe(ScZr) alloys significantly refined the grains. Primary multilayer Al3(Sc,Zr) particles precipitated during casting and subsequent cooling in the alloy with Sc,Zr-addition. These particles were stable up to 450 °C. No changes of microhardness values (in accuracy of measurement) from room temperature up to 450 °C in the alloys were observed there. Thus, the probable presence of these secondary Al3(Sc,Zr) particles is most likely the reason of hardening (ΔHV ALMOST EQUAL TO 20) of the AlZnMgCuFeScZr alloy. A little higher electrochemical potential was measured for AlZnMgCuFeScZr alloy (- 1144 mV) than for AlZnMgCuFe alloy (- 1171 mV). One exothermic process was observed in hot-rolled alloys; apparent activation energy of this process was calculated as ~ 100 kJ mol-1. Additional precipitation and/or coarsening of S-phase together with precipitation of T-phase are probably connected with the exothermic process. Sc,Zr-addition has a significant antirecrystallization effect. No recrystallization was observed in the hot-rolled AlZnMgCuFeScZr alloy, neither after annealing at 350 °C/10 h nor after annealing at 450 °C/10 h. A partial recrystallization effect of the hot-rolled AlZnMgCuFe alloy is clearly registered after annealing at 350 °C/10 h and occurs very strongly after annealing at 450 °C/10 h.
Klasifikace
Druh
J<sub>imp</sub> - Článek v periodiku v databázi Web of Science
CEP obor
—
OECD FORD obor
10302 - Condensed matter physics (including formerly solid state physics, supercond.)
Návaznosti výsledku
Projekt
<a href="/cs/project/GA17-17139S" target="_blank" >GA17-17139S: Přímý a nepřímý vliv Sc a Zr na raná precipitační stádia v moderních lehkých konstrukčních Al slitinách</a><br>
Návaznosti
P - Projekt vyzkumu a vyvoje financovany z verejnych zdroju (s odkazem do CEP)
Ostatní
Rok uplatnění
2020
Kód důvěrnosti údajů
S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů
Údaje specifické pro druh výsledku
Název periodika
Journal of Thermal Analysis and Calorimetry
ISSN
1388-6150
e-ISSN
—
Svazek periodika
2020
Číslo periodika v rámci svazku
142
Stát vydavatele periodika
HU - Maďarsko
Počet stran výsledku
11
Strana od-do
1613-1623
Kód UT WoS článku
000578564600023
EID výsledku v databázi Scopus
2-s2.0-85092539023