Pregled bibliografske jedinice broj: 842420
Corrosion behaviour of CuAlNi shape memory alloy in NaCl solution after quenching at 885 °C in water
Corrosion behaviour of CuAlNi shape memory alloy in NaCl solution after quenching at 885 °C in water // Proceedings of Third International Symposium on Corrosion and Protection of Materials and Enviroment
Bar: Crnogorsko društvo za koroziju, zaštitu materijala i zaštitu životne sredine, 2016. str. 67-75 (poster, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
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Naslov
Corrosion behaviour of CuAlNi shape memory alloy in
NaCl solution after quenching at 885 °C in water
Autori
Ivanić, Ivana ; Kožuh, Stjepan ; Vrsalović, Ladislav ; Kosec, Borut ; Anžel, Ivan ; Gojić, Mirko
Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni
Izvornik
Proceedings of Third International Symposium on Corrosion and Protection of Materials and Enviroment
/ - Bar : Crnogorsko društvo za koroziju, zaštitu materijala i zaštitu životne sredine, 2016, 67-75
ISBN
978-9940-9334-2-5
Skup
Third International Symposium on Corrosion and Protection of Materials and Enviroment
Mjesto i datum
Bar, Crna Gora, 12.10.2016. - 15.10.2016
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
shape memory alloy ; quenching ; martensite microstructure ; corrosion
Sažetak
The corrosion behavior in 0.9 % NaCl solution (pH = 3.4-7.4) at 37°C of CuAlNi shape memory alloy (SMA) after quenching in water were studied by means of open circuit potential (EOC) measurements, linear and potentiodynamic polarizations measurements. The investigations were performed on samples after quenching at 885 °C (in duration of 60 minutes) in water. The results showed that lowering the pH of the solution leads to a decrease in the value of polarization resistance, and increase the value of corrosion current density. Scanning electron microscopy investigations revealed deposits of corrosion products on the surface in the form of spikes. The EDS analysis has showed that the surface contains the significant amount of oxygen and chloride compounds. Optical microscopy (OM) shows that after removing the surface layers of corrosion products, damages due to pitting corrosion were clearly visible on electrode surface.
Izvorni jezik
Engleski
Znanstvena područja
Kemijsko inženjerstvo, Metalurgija
POVEZANOST RADA
Projekti:
HRZZ projekt IP-2014-09-3405
Ustanove:
Kemijsko-tehnološki fakultet, Split,
Metalurški fakultet, Sisak