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Composition design and performance analysis of binary and ternary Mg-Zn-Ti alloys for biomedical implants

Authors
Mukhtar, SehrishKamran, MuhammadTayyeb, AsimaHussain, FarazIshtiaq, MuhammadRiaz, FahadAsghar, Waqas
Issue Date
Dec-2025
Publisher
Kluwer Academic Publishers
Keywords
Magnesium alloy; Binary alloy; Ternary alloy; Mechanical alloying; Young's modulus; Alloy performance
Citation
Journal of Biological Physics, v.51, no.1
Indexed
SCIE
SCOPUS
Journal Title
Journal of Biological Physics
Volume
51
Number
1
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77207
DOI
10.1007/s10867-025-09672-y
ISSN
0092-0606
1573-0689
Abstract
Magnesium-based implants are highly valued in the biomedical field for biocompatibility and biodegradability, though their inherent low strength in body fluids is a limitation. This study addresses this by alloying magnesium with zinc and titanium to enhance its properties. Mechanical alloying was used to synthesize binary (Mg-Zn, Mg-Ti) and ternary (Mg-Zn-Ti) alloys, which were then compacted and sintered. The alloy powders, composed of 10 wt% Zn and 5 wt% Ti, were milled at 360 rpm for 10 h. Microstructural analysis revealed uniformly dispersed particles, with SEM confirming spherical and fine particles alongside laminates. XRD identified intermetallic compound formation. The ternary alloy demonstrated superior micro-hardness and Young's modulus similar to human bone, making it particularly promising for biomedical applications. Incorporating zinc and titanium into the magnesium matrix resulted in a ternary alloy that outperformed its binary counterparts.
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공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles

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