Influence of heat treatment on the corrosion properties of CuAlMn shape memory alloys

Author:

Vrsalović Ladislav1ORCID,Ivanić Ivana2,Kožuh Stjepan2,Kosec Borut3,Bizjak Milan3,Kovač Janez4,Gabor Urška4,Gojić Mirko2

Affiliation:

1. Department of Electrochemistry and Materials Protection, Faculty of Chemistry and Technology , University of Split , Ruđera Boškovića 35 , 21000 Split , Croatia e-mail:

2. Faculty of Metallurgy, University of Zagreb , Aleja narodnih heroja 3 , 44000 Sisak , Croatia

3. Faculty of Natural Sciences and Engineering, University of Ljubljana , Aškerčeva cesta 12 , 1000 Ljubljana , Slovenia

4. Institute Jožef Stefan , Jamova 39 , 1000 Ljubljana , Slovenia

Abstract

Abstract This paper reports on the influence of heat treatment on the corrosion properties of CuAlMn alloy in 0.1%, 0.9% and 1.5% NaCl solution (pH = 7.4). Heat treatment of alloy samples was performed by samples annealing at 900°C for 30 min. Electrochemical methods of investigations included measuring the open circuit potential (E oc) and linear and potentiodynamic polarisation. Optical microscopy, scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX) were used to study the morphology and composition of the corroded surfaces, along with X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM). Heat-treated samples have slightly more positive values of E oc, slightly lower values of corrosion current density and higher values of polarisation resistance compared with the as-cast alloy. The microscopic analysis showed the rough surfaces due to corrosion processes. Increasing the electrolyte concentration leads to an increase in alloy surface damage. AFM and SEM examinations showed that the surface was covered with interlaced layers of corrosion products, as well as cracks and ducts formed by their dissolution. EDX and XPS analyses showed that corrosive products consist mainly of aluminium and manganese oxides and chlorides. Annealed CuAlMn alloy samples have significantly lower copper content compared with the as-cast CuAlMn alloy.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,General Chemical Engineering,General Chemistry

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