Zirconium Alloys for Orthopaedic and Dental Applications
Version 2 2024-06-05, 00:27Version 2 2024-06-05, 00:27
Version 1 2019-11-07, 09:51Version 1 2019-11-07, 09:51
journal contribution
posted on 2024-06-05, 00:27 authored by A Mehjabeen, T Song, Wei XuWei Xu, HP Tang, M Qian© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Zirconium alloys for biomedical applications are receiving increasing attention due to their two unique properties: 1) the formation of an intrinsic bone-like apatite layer on their surfaces in body environments, and 2) better compatibility with magnetic resonance imaging (MRI) diagnostics due to their low magnetic susceptibility, as well as their overall excellent biocompatibility, mechanical properties, and bio-corrosion resistance. In particular, since both of the MRI quality and speed depend on magnetic field strength, there is a compelling drive for use of high magnetic field strength (>3 Tesla) MRI systems. This paper provides a comprehensive review of the characteristics of commercially pure (CP) Zr and Zr-based alloys as orthopaedic and dental implant materials. These include their 1) phase transformations; 2) unique properties including corrosion resistance, biocompatibility, magnetic susceptibility, shape memory effect, and super-elasticity; 3) mechanical properties; 4) current orthopaedic and dental applications; and 5) the d-electron theory for Zr alloy design and novel Zr-alloys. The mechanical properties of Zr-based bulk metallic glasses (BMGs) and their application as implant materials are also assessed. Future directions for extending the use of Zr-alloys as orthopaedic and dental implants are discussed.
History
Journal
Advanced Engineering MaterialsVolume
20Article number
ARTN 1800207Pagination
1 - 21Location
London, Eng.Open access
- Yes
Link to full text
ISSN
1438-1656eISSN
1527-2648Language
EnglishPublication classification
C1.1 Refereed article in a scholarly journalIssue
9Publisher
WILEY-V C H VERLAG GMBHUsage metrics
Keywords
Science & TechnologyTechnologyMaterials Science, MultidisciplinaryMaterials Sciencebiocompatibilityd-electron theoryimplantsmagnetic susceptibilityzirconium alloysBULK METALLIC-GLASSLOW YOUNGS MODULUSOMEGA-PHASE-TRANSFORMATIONIN-VITRO BIOCOMPATIBILITYELASTIC ADMISSIBLE STRAINMAGNETIC-RESONANCE IMAGESHARD-TISSUE REPLACEMENTSSHAPE-MEMORY ALLOYSZR-BINARY-ALLOYSTI-BASED ALLOYS4016 Materials engineering4003 Biomedical engineering
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