Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet

Stamping processing is commonly used to form medical devices and implant. However, for biodegradable Mg alloy, the stamping will influence the degradation behavior because of the change in microstructure after stamping. So in this study, the As-rolled Mg–2Zn-0.5Nd alloy (ZN20) was processed by stamp...

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Main Authors: Iniobong P. Etim, Wen Zhang, Lili Tan, Ke Yang
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-03-01
Series:Bioactive Materials
Online Access:http://www.sciencedirect.com/science/article/pii/S2452199X20300098
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spelling doaj-64be4dbb031546338db007ac6c35b2d92021-04-02T14:50:33ZengKeAi Communications Co., Ltd.Bioactive Materials2452-199X2020-03-0151133141Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheetIniobong P. Etim0Wen Zhang1Lili Tan2Ke Yang3Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China; School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, ChinaInstitute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China; School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, ChinaInstitute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China; Corresponding author.Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China; Corresponding author.Stamping processing is commonly used to form medical devices and implant. However, for biodegradable Mg alloy, the stamping will influence the degradation behavior because of the change in microstructure after stamping. So in this study, the As-rolled Mg–2Zn-0.5Nd alloy (ZN20) was processed by stamping. The microstructure, crystallographic orientation and corrosion performance of this processing method was investigated to reveal the influence of the stamping process on the degradation rate of Rolled Mg–2Zn–Nd (ZN20). The degradation rate was measured by immersion of the Mg–2Zn-0.5Nd alloy in simulated body fluid using Electrochemical Impedance Spectroscopy, Potentiodynamic polarization and mass loss. The in vitro degradation result shows that the degradation rate of the Rolled Mg–2Zn-0.5Nd increased from 0.2 mm/year to 0.5 mm/year after stamping processing. The result reveals that the activation of the{101‾2}tension twin during stamping can remarkably weaken the{0001} basal texture and have a significant influence on the corrosion rate of Stamped Mg–2Zn-0.5Nd sheet. After removing the deformation by annealing, the degradation rate was reduced to 0.15 mm/year. This work is expected to prompt better microstructural design of biomedical Mg in order to control its degradation behavior for biomedical application. Keywords: Texture, Degradation rate, Crystallographic orientation, Stamping, Annealing, Twin, Deformationhttp://www.sciencedirect.com/science/article/pii/S2452199X20300098
collection DOAJ
language English
format Article
sources DOAJ
author Iniobong P. Etim
Wen Zhang
Lili Tan
Ke Yang
spellingShingle Iniobong P. Etim
Wen Zhang
Lili Tan
Ke Yang
Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
Bioactive Materials
author_facet Iniobong P. Etim
Wen Zhang
Lili Tan
Ke Yang
author_sort Iniobong P. Etim
title Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
title_short Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
title_full Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
title_fullStr Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
title_full_unstemmed Influence of stamping on the biodegradation behavior of Mg–2Zn-0.5Nd (ZN20) sheet
title_sort influence of stamping on the biodegradation behavior of mg–2zn-0.5nd (zn20) sheet
publisher KeAi Communications Co., Ltd.
series Bioactive Materials
issn 2452-199X
publishDate 2020-03-01
description Stamping processing is commonly used to form medical devices and implant. However, for biodegradable Mg alloy, the stamping will influence the degradation behavior because of the change in microstructure after stamping. So in this study, the As-rolled Mg–2Zn-0.5Nd alloy (ZN20) was processed by stamping. The microstructure, crystallographic orientation and corrosion performance of this processing method was investigated to reveal the influence of the stamping process on the degradation rate of Rolled Mg–2Zn–Nd (ZN20). The degradation rate was measured by immersion of the Mg–2Zn-0.5Nd alloy in simulated body fluid using Electrochemical Impedance Spectroscopy, Potentiodynamic polarization and mass loss. The in vitro degradation result shows that the degradation rate of the Rolled Mg–2Zn-0.5Nd increased from 0.2 mm/year to 0.5 mm/year after stamping processing. The result reveals that the activation of the{101‾2}tension twin during stamping can remarkably weaken the{0001} basal texture and have a significant influence on the corrosion rate of Stamped Mg–2Zn-0.5Nd sheet. After removing the deformation by annealing, the degradation rate was reduced to 0.15 mm/year. This work is expected to prompt better microstructural design of biomedical Mg in order to control its degradation behavior for biomedical application. Keywords: Texture, Degradation rate, Crystallographic orientation, Stamping, Annealing, Twin, Deformation
url http://www.sciencedirect.com/science/article/pii/S2452199X20300098
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