High entropy alloy coatings for biomedical applications: A review
Покрытия из высокоэнтропийных сплавов для биомедицинских применений: обзор
2022-09-28
SCID: 54.1/24kqh24z
Discuss with AI
biomedical applicationscorrosion resistancehigh entropy alloy coatingsmetallic biomaterialssurface modification
Figures from the paper
Abstract (AI)
Metallic biomaterials are widely used as short and long-term implantable devices by virtue of their outstanding mechanical properties, such as high load-bearing capacity and fatigue resistance. Due to their inherent bioinertness, potential corrosion, and some inferior surface properties, metallic biomaterials generally require coating and surface modification to improve their function and extend their lifespan in the body. High entropy alloys (HEAs) are a novel class of materials that are composed of at least five principal metallic elements with equiatomic or close-to-equiatomic compositions. Some of the unique properties of HEAs for surface modification and coating include excellent corrosion resistance, remarkable wear resistance, high strength/hardness, and strong diffusion resistance. The coating of HEAs on metallic substrates can be achieved through different techniques, including thermal spraying, laser deposition, and vapor deposition. HEAs have become a promising candidate for biomedical applications by combining tailor-made surface topography, excellent biocompatibility, appropriate surface chemistry, and element composition design. The present article is a thorough review of the research on the surface modification and coating of metallic biomaterials using HEAs.
Key Findings
1
HEA coatings can be fabricated using thermal spraying, laser deposition, and vapor deposition techniques.
2
HEA coatings offer excellent corrosion and wear resistance, high strength and hardness, and strong diffusion resistance for metallic substrates.
3
HEAs are promising biomedical surface-modification materials because their topography, surface chemistry, biocompatibility, and elemental composition can be tailored.
4
High entropy alloys consist of at least five principal metallic elements in equiatomic or near-equiatomic proportions.
5
Metallic biomaterials often require surface coatings because bioinertness, corrosion susceptibility, and inadequate surface properties can limit implant performance and lifespan.
Research Object
metallic biomaterials coated or surface-modified with high-entropy alloys for biomedical applications
Research Subject
the effects and biomedical performance of HEA-based surface coatings, including corrosion and wear resistance, mechanical strength, biocompatibility, surface topography, surface chemistry, and elemental composition
Publication Details
Publication Date
2022-09-28
Journal
Publisher
ISSN
Cited by
90
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest