Response of surface mechanical properties to electrochemical dissolution determined by in situ nanoindentation technique
An in situ nanoindentation technique was used to study the mechanical property degradation in the surface layer induced by electrochemical dissolution. The load–depth curves of indentation were measured using pure iron immersed in electrolyte. The experimental result showed that the anodic currents...
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Published in | Electrochemistry communications Vol. 8; no. 7; pp. 1092 - 1098 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Lausanne
Elsevier B.V
01.07.2006
Amsterdam Elsevier Science New York, NY |
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Abstract | An in situ nanoindentation technique was used to study the mechanical property degradation in the surface layer induced by electrochemical dissolution. The load–depth curves of indentation were measured using pure iron immersed in electrolyte. The experimental result showed that the anodic currents reduced both hardness and elastic modulus of the material surface layer, and the degradation effect declined with increasing distance from the surface. The electrochemical dissolution-induced degradation was explained by the generation of non-equilibrium vacancies in the metal surface layer during dissolution process. |
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AbstractList | An in situ nanoindentation technique was used to study the mechanical property degradation in the surface layer induced by electrochemical dissolution. The load–depth curves of indentation were measured using pure iron immersed in electrolyte. The experimental result showed that the anodic currents reduced both hardness and elastic modulus of the material surface layer, and the degradation effect declined with increasing distance from the surface. The electrochemical dissolution-induced degradation was explained by the generation of non-equilibrium vacancies in the metal surface layer during dissolution process. |
Author | Guo, H.X. Luo, J.L. Lu, B.T. |
Author_xml | – sequence: 1 givenname: H.X. surname: Guo fullname: Guo, H.X. – sequence: 2 givenname: B.T. surname: Lu fullname: Lu, B.T. – sequence: 3 givenname: J.L. surname: Luo fullname: Luo, J.L. email: jingli.luo@ualberta.ca |
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Keywords | In situ nanoindentation Electrochemical dissolution Iron Hardness Modulus Atomic force microscopy Electrochemical corrosion Nanoindentation Mechanical properties Transition metal Surface structure Surface hardness Electrodissolution |
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SubjectTerms | Applied sciences Corrosion Corrosion environments Electrochemical dissolution Exact sciences and technology Hardness In situ nanoindentation Iron Metals. Metallurgy Modulus |
Title | Response of surface mechanical properties to electrochemical dissolution determined by in situ nanoindentation technique |
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