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Mg-Li-Based Alloys as Implant Materials

Mg-Li-Based Alloys as Implant Materials is a M.Tech project topic for Metallurgical & Materials Engineering. Explore the IEEE-style abstract,…

Mg-Li-Based Alloys as Implant Materials is a M.Tech project topic for Metallurgical & Materials Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Mg-Li-Based Alloys as Implant Materials Project Details

Abstract

This research direction examines magnesium-lithium-based alloys for use in temporary implants and the challenges that current implant materials face. It pays particular attention to the design, characterization, and evaluation of quaternary alloy systems of magnesium, lithium, zinc, and calcium. Biodegradable magnesium alloys are of great interest in implantable medical devices because they are suitable for temporary use. Mg-Li alloys, in particular, have been studied because of their improved ductility and uniform degradation. The presence of lithium in the Mg-Li-Zn-Ca alloy system causes a structural change of hcp magnesium to bcc, resulting in improved ductility. Additionally, lithium enhances the formation of a solid solution and a protective surface oxide layer, which

lowers the corrosion rate in a biological environment. The alloys are, therefore, considered to be biocompatible and this is supported by cell viability and metabolic activity assays conducted in immersion test solutions. The improved mechanical and degradation properties of these alloys in comparison to other magnesium-based alloys further support their prospective use in the biomedical sector.

Reference Paper Mg-Li-Based Alloys as Implant Materials
Domain Metallurgical & Materials Engineering
Sub-Domain Advanced Materials / Biomaterials / Biodegradable Polymers
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