Improving the corrosion behavior of magnesium alloys with a focus on AZ91 Mg alloy intended for biomedical application by microstructure modification and coating

FZ Akbarzadeh, ER Ghomi… - Proceedings of the …, 2022 - journals.sagepub.com
Proceedings of the Institution of Mechanical Engineers, Part H …, 2022journals.sagepub.com
Magnesium alloys such as AZ91 have received much attention due to their attractive
properties, including biocompatibility and lightness. Although magnesium is a potential
candidate for implant application, due to its rapid degradation in the physiological
environment, there are still some challenges to using it as biocompatible implants. In this
regard, various techniques such as microstructure modification and coating are utilized to
moderate the degradation rate of magnesium alloys. Therefore, efforts are being made to …
Magnesium alloys such as AZ91 have received much attention due to their attractive properties, including biocompatibility and lightness. Although magnesium is a potential candidate for implant application, due to its rapid degradation in the physiological environment, there are still some challenges to using it as biocompatible implants. In this regard, various techniques such as microstructure modification and coating are utilized to moderate the degradation rate of magnesium alloys. Therefore, efforts are being made to conduct more extensive research to produce magnesium implants with acceptable corrosion resistance. In this literature review, an overview of the history of research on the corrosion behavior, biodegradability, microstructure deformation mechanisms, crystallographic texture in magnesium alloys with a focus on AZ91 Mg alloy, is provided. In addition, the necessity of improving the properties of AZ91 Mg alloy by the two methods of improving microstructure and coating, and existing innovations in these methods are investigated.
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