A study of degradable orthopedic implant: An insight in magnesium metal matrix composites
Author:
Publisher
Elsevier BV
Subject
Multidisciplinary
Reference19 articles.
1. Influence of reinforcements in friction stir processed magnesium alloys: insight in medical applications;Adetunla;Mater. Res. Express,2018
2. Magnesium alloy AZ63A reinforcement by alloying with gallium and using high-disperse ZrO2 particles;Khokhlova;J. Magnes. Alloy.,2016
3. Improving the corrosion resistance of AZ91D magnesium alloy through reinforcement with titanium carbides and borides;Gobara;J. Magnes. Alloy.,2015
4. Tensile properties of AZ61 magnesium alloy produced by multi-pass friction stir processing: effect of sample orientation;Luo;Mater. Sci. Eng., A,2018
5. ScienceDirect Improving the Biocompability and Corrosion Resistance of AZ31 Mg Alloy for Biomedical Applications;Adetunla,2019
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2. Investigation into the mechanical properties of heat-treated magnesium metal matrix composites reinforced with TiO2 and Sn particles;Interactions;2024-07-09
3. Multifunctional Coatings on Mg‐Based Metallic Biomaterials and Implants;Advanced Engineering Materials;2024-04-11
4. Global trends in the research of biodegradable biomedical magnesium-based materials: a bibliometric analysis;Frontiers in Materials;2023-09-06
5. Enhancing bone formation using absorbable AZ31B magnesium alloy membranes during distraction osteogenesis: A new material study;Heliyon;2023-08
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