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  1. 13 maj 2021 · This article reviews both the engineering and biomedical aspects and applications for magnesium and its alloys. It will also elaborate on the challenges that the material faces and how they can be overcome and discuss its outlook.

  2. 1 sty 2020 · In this review paper, the importance of Mg alloy, its mechanical properties and microstructures with the application of aerospace, transport and biomedical applications are demonstrated. Generally, Mg alloy contains low corrosion, high strength and low density.

  3. MagnesiumLithium (Mg–Li) alloys, characterized as ultra-light alloys, exhibit exceptional plasticity in comparison to other magnesium alloy systems. The damping performance of these alloys is influenced by diverse factors, including the Li element content, temperature, processing, and frequency.

  4. 1 sty 2022 · A complete section is dedicated towards detailing the recent trends of magnesium (Mg) alloys, i.e., the biodegradable nature and applications of Mg alloys. The influence of biocorrosion on Mg alloys and techniques to overcome it have been deliberated.

  5. 15 sie 2022 · Magnesium (Mg) and Mg alloys are considered as potential candidates for biomedical applications because of their high specific strength, low density, and elastic modulus, degradability, good biocompatibility and biomechanical compatibility.

  6. 1 mar 2023 · This work reviews studies related to the organization, mechanics, biocompatibility and corrosion properties of different magnesium-based alloys and analyzes the effect of different manufacturing processes on the mechanical properties of magnesium alloy implants.

  7. 19 maj 2021 · In this paper, we review recent studies on the effect of solid solution alloying elements on ductility (fracture toughness), with focusing on polycrystalline binary magnesium alloys.