Early stages of aluminum corrosion in a NaCl solution as well as in pure water have been studied using the quartz crystal microbalance (QCM) sensors prepared as magnetron-sputtered (MS) and glued foil (GF) modifications. Structure, composition, and surface morphology of the samples were characterized by x-ray diffraction, atomic force microscopy, scanning electron microscope-energy dispersive spectroscopy, scanning transmission electron microscopy, and high angle annular dark field (HAADF). The QCM provided real time information in situ with nanogram resolution on the corrosion product layer formation and aluminum corrosion rate. Although the corrosion rate in pure water was negligible, a dramatic acceleration has been observed in the chloride solution. Although the MS and GF samples were of different crystallographic structures, both samples exhibited similar corrosion behavior at early stages. HAADF showed two-layer structure on the aluminum exposed to NaCl solution. Formation of a mixture of aluminum oxide and oxyhydroxide on the corroding surface has been concluded from x-ray photoelectron spectroscopy measurements. Thickness of the oxygen-containing layer estimated from the QCM data was in agreement with that determined by HAADF.
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1 September 2019
Research Article|
May 11 2019
Microgravimetric Study of Early-Stage Aluminum Corrosion in Neutral Media
Laurynas Staišiūnas;
Laurynas Staišiūnas
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Eimutis Juzeliūnas;
Eimutis Juzeliūnas
‡
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
‡Corresponding author. E-mail: [email protected].
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Konstantinas Leinartas;
Konstantinas Leinartas
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Martynas Skapas;
Martynas Skapas
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Asta Grigucevičienė;
Asta Grigucevičienė
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Remigijus Juškėnas;
Remigijus Juškėnas
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Dalia Bučinskienė;
Dalia Bučinskienė
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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Vitalija Jasulaitienė
Vitalija Jasulaitienė
*Department of Electrochemical Material Science, Center for Physical Sciences and Technology, Saulėtekio av. 3, LT-10257 Vilnius,
Lithuania.
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‡Corresponding author. E-mail: [email protected].
Received:
January 09 2019
Revision Received:
May 11 2019
Accepted:
May 11 2019
Online ISSN: 1938-159X
Print ISSN: 0010-9312
© 2019, NACE International
2019
CORROSION (2019) 75 (9): 1044–1050.
Article history
Received:
January 09 2019
Revision Received:
May 11 2019
Accepted:
May 11 2019
Citation
Laurynas Staišiūnas, Eimutis Juzeliūnas, Konstantinas Leinartas, Martynas Skapas, Asta Grigucevičienė, Remigijus Juškėnas, Dalia Bučinskienė, Vitalija Jasulaitienė; Microgravimetric Study of Early-Stage Aluminum Corrosion in Neutral Media. CORROSION 1 September 2019; 75 (9): 1044–1050. https://doi.org/10.5006/3140
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