Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing

Research on Fe-based biodegradable alloys for implant applications has increased considerably over the past decade. However, there is limited information on the influence of testing electrolytes on corrosion product formation and general corrosion progress. In this work, the effect of Hanks’ Balance...

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Main Authors: Christabelle Tonna, Cheng Wang, Di Mei, Sviatlana V. Lamaka, Mikhail L. Zheludkevich, Joseph Buhagiar
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2022-01-01
Series:Bioactive Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452199X21002681
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spelling doaj-2701c9085ab64ef6824ebb12a58c12942021-08-18T04:22:34ZengKeAi Communications Co., Ltd.Bioactive Materials2452-199X2022-01-017426440Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testingChristabelle Tonna0Cheng Wang1Di Mei2Sviatlana V. Lamaka3Mikhail L. Zheludkevich4Joseph Buhagiar5Department of Metallurgy and Materials Engineering, University of Malta, Msida, Malta; Corresponding author.Institute of Surface Science, Helmholtz-Zentrum Hereon, Geesthacht, 21502, GermanyInstitute of Surface Science, Helmholtz-Zentrum Hereon, Geesthacht, 21502, Germany; School of Materials Science and Engineering & Henan Key Laboratory of Advanced Magnesium Alloy, Zhengzhou University, Zhengzhou, 450001, PR ChinaInstitute of Surface Science, Helmholtz-Zentrum Hereon, Geesthacht, 21502, GermanyInstitute of Surface Science, Helmholtz-Zentrum Hereon, Geesthacht, 21502, Germany; Institute for Materials Science, Faculty of Engineering, Kiel University, Kiel, 24103, GermanyDepartment of Metallurgy and Materials Engineering, University of Malta, Msida, MaltaResearch on Fe-based biodegradable alloys for implant applications has increased considerably over the past decade. However, there is limited information on the influence of testing electrolytes on corrosion product formation and general corrosion progress. In this work, the effect of Hanks’ Balanced Salt Solution (HBSS) with or without Ca2+ on the corrosion of Fe, Fe35Mn and (Fe35Mn)5Ag powder-processed coupons has been studied using potentiodynamic polarisation, Electrochemical Impedance Spectroscopy (EIS), and preliminary localised measurement of pH and dissolved oxygen concentration in close proximity to the metal surface. Both Fe35Mn and (Fe35Mn)5Ag alloys showed accelerated corrosion when compared to pure Fe based on potentiodynamic testing results, with FeMnAg exhibiting the highest corrosion rate in Ca2+-containing HBSS. The results indicate that in Ca2+-containing HBSS, the formation of a partially protective Ca/P layer decelerates the corrosion progress, whereas the Fe- and Mn-phosphates formed in Ca2+-free HBSS do not have the same effect. The Ca/P layer on (Fe35Mn)5Ag experienced a reduction in resistance following several hours of testing, indicating partial loss of its protective effect.http://www.sciencedirect.com/science/article/pii/S2452199X21002681Fe alloysBiodegradable metalsPowder metallurgyElectrochemical impedance spectroscopyLocal pHLocal DO
collection DOAJ
language English
format Article
sources DOAJ
author Christabelle Tonna
Cheng Wang
Di Mei
Sviatlana V. Lamaka
Mikhail L. Zheludkevich
Joseph Buhagiar
spellingShingle Christabelle Tonna
Cheng Wang
Di Mei
Sviatlana V. Lamaka
Mikhail L. Zheludkevich
Joseph Buhagiar
Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
Bioactive Materials
Fe alloys
Biodegradable metals
Powder metallurgy
Electrochemical impedance spectroscopy
Local pH
Local DO
author_facet Christabelle Tonna
Cheng Wang
Di Mei
Sviatlana V. Lamaka
Mikhail L. Zheludkevich
Joseph Buhagiar
author_sort Christabelle Tonna
title Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
title_short Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
title_full Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
title_fullStr Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
title_full_unstemmed Biodegradation behaviour of Fe-based alloys in Hanks’ Balanced Salt Solutions: Part I. material characterisation and corrosion testing
title_sort biodegradation behaviour of fe-based alloys in hanks’ balanced salt solutions: part i. material characterisation and corrosion testing
publisher KeAi Communications Co., Ltd.
series Bioactive Materials
issn 2452-199X
publishDate 2022-01-01
description Research on Fe-based biodegradable alloys for implant applications has increased considerably over the past decade. However, there is limited information on the influence of testing electrolytes on corrosion product formation and general corrosion progress. In this work, the effect of Hanks’ Balanced Salt Solution (HBSS) with or without Ca2+ on the corrosion of Fe, Fe35Mn and (Fe35Mn)5Ag powder-processed coupons has been studied using potentiodynamic polarisation, Electrochemical Impedance Spectroscopy (EIS), and preliminary localised measurement of pH and dissolved oxygen concentration in close proximity to the metal surface. Both Fe35Mn and (Fe35Mn)5Ag alloys showed accelerated corrosion when compared to pure Fe based on potentiodynamic testing results, with FeMnAg exhibiting the highest corrosion rate in Ca2+-containing HBSS. The results indicate that in Ca2+-containing HBSS, the formation of a partially protective Ca/P layer decelerates the corrosion progress, whereas the Fe- and Mn-phosphates formed in Ca2+-free HBSS do not have the same effect. The Ca/P layer on (Fe35Mn)5Ag experienced a reduction in resistance following several hours of testing, indicating partial loss of its protective effect.
topic Fe alloys
Biodegradable metals
Powder metallurgy
Electrochemical impedance spectroscopy
Local pH
Local DO
url http://www.sciencedirect.com/science/article/pii/S2452199X21002681
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AT chengwang biodegradationbehaviouroffebasedalloysinhanksbalancedsaltsolutionspartimaterialcharacterisationandcorrosiontesting
AT dimei biodegradationbehaviouroffebasedalloysinhanksbalancedsaltsolutionspartimaterialcharacterisationandcorrosiontesting
AT sviatlanavlamaka biodegradationbehaviouroffebasedalloysinhanksbalancedsaltsolutionspartimaterialcharacterisationandcorrosiontesting
AT mikhaillzheludkevich biodegradationbehaviouroffebasedalloysinhanksbalancedsaltsolutionspartimaterialcharacterisationandcorrosiontesting
AT josephbuhagiar biodegradationbehaviouroffebasedalloysinhanksbalancedsaltsolutionspartimaterialcharacterisationandcorrosiontesting
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