Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process

Microstructure and corrosion behavior of the solution-treated Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr (wt%) alloy were studied. The results of microstructure indicated that the second phases of as-cast alloy was mainly comprised of Mg<sub>12</sub>Zn(Gd,Y) phase, Mg<sub>3</sub>Zn<sub>...

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Main Authors: Ya Liu, Jiuba Wen, Huai Yao, Junguang He, Huan Li
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/4/836
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spelling doaj-2dcc84117b90413da5691c13ba24ebef2020-11-25T03:32:00ZengMDPI AGMaterials1996-19442020-02-0113483610.3390/ma13040836ma13040836Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment ProcessYa Liu0Jiuba Wen1Huai Yao2Junguang He3Huan Li4School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, ChinaSchool of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, ChinaSchool of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, ChinaSchool of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, ChinaSchool of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, ChinaMicrostructure and corrosion behavior of the solution-treated Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr (wt%) alloy were studied. The results of microstructure indicated that the second phases of as-cast alloy was mainly comprised of Mg<sub>12</sub>Zn(Gd,Y) phase, Mg<sub>3</sub>Zn<sub>3</sub>(Gd,Y)<sub>2</sub> phase and (Mg,Zn)<sub>3</sub>(Gd,Y) phase. After solution treatment process, the second phase gradually dissolved into the matrix, and the grain size increased. The effect of microgalvanic corrosion between &#945;-Mg matrix and second phase was also improved. At the range of 470~510 &#176;C solution treatment temperature, the corrosion resistance of the samples increases at first and then decreases slightly at 510 &#176;C. All the solution-treated Mg-Zn-Gd-Y-Zr samples exhibit better corrosion resistance in comparison with as-cast sample. The existence form of the remaining phase affects the morphology of the corroded surface that relatively complete dissolution with homogeneous microstructure makes the sample more effective to obtain uniform corrosion form. The optimum temperature for solution treatment is 490 &#176;C, which shows a much better corrosion resistance and uniform corrosion form after soaking for a long time.https://www.mdpi.com/1996-1944/13/4/836mg-zn-zr-gd-ysolution treatmentmicrostructurecorrosion
collection DOAJ
language English
format Article
sources DOAJ
author Ya Liu
Jiuba Wen
Huai Yao
Junguang He
Huan Li
spellingShingle Ya Liu
Jiuba Wen
Huai Yao
Junguang He
Huan Li
Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
Materials
mg-zn-zr-gd-y
solution treatment
microstructure
corrosion
author_facet Ya Liu
Jiuba Wen
Huai Yao
Junguang He
Huan Li
author_sort Ya Liu
title Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
title_short Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
title_full Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
title_fullStr Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
title_full_unstemmed Enhancing the Corrosion Resistance Performance of Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr Biomaterial via Solution Treatment Process
title_sort enhancing the corrosion resistance performance of mg-1.8zn-1.74gd-0.5y-0.4zr biomaterial via solution treatment process
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-02-01
description Microstructure and corrosion behavior of the solution-treated Mg-1.8Zn-1.74Gd-0.5Y-0.4Zr (wt%) alloy were studied. The results of microstructure indicated that the second phases of as-cast alloy was mainly comprised of Mg<sub>12</sub>Zn(Gd,Y) phase, Mg<sub>3</sub>Zn<sub>3</sub>(Gd,Y)<sub>2</sub> phase and (Mg,Zn)<sub>3</sub>(Gd,Y) phase. After solution treatment process, the second phase gradually dissolved into the matrix, and the grain size increased. The effect of microgalvanic corrosion between &#945;-Mg matrix and second phase was also improved. At the range of 470~510 &#176;C solution treatment temperature, the corrosion resistance of the samples increases at first and then decreases slightly at 510 &#176;C. All the solution-treated Mg-Zn-Gd-Y-Zr samples exhibit better corrosion resistance in comparison with as-cast sample. The existence form of the remaining phase affects the morphology of the corroded surface that relatively complete dissolution with homogeneous microstructure makes the sample more effective to obtain uniform corrosion form. The optimum temperature for solution treatment is 490 &#176;C, which shows a much better corrosion resistance and uniform corrosion form after soaking for a long time.
topic mg-zn-zr-gd-y
solution treatment
microstructure
corrosion
url https://www.mdpi.com/1996-1944/13/4/836
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