Application of Plasma Spraying Technology in Surface Modification of Orthopedic Implants
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Keywords

Plasma spraying technology
Orthopedic implants
Surface modification
Technical application

DOI

10.26689/bas.v2i6.9323

Submitted : 2024-12-09
Accepted : 2024-12-24
Published : 2025-01-08

Abstract

In recent years, the demand for orthopedic implants in the medical field has been continuously increasing. At present, clinical personnel need to pay attention to various performance aspects of orthopedic implants when applying them, such as strength, wear resistance, corrosiveness, antibacterial properties, etc. In terms of surface modification of orthopedic implants, clinical personnel can apply plasma spraying technology. This technology can not only improve surface hardness and wear resistance, enhance biocompatibility and osteogenic ability, but also achieve antibacterial treatment, which helps to improve the clinical treatment effect of orthopedics. To this end, the article explores plasma spraying technology and orthopedic implants, analyzes the application of plasma spraying technology in surface modification of orthopedic implants, and raises some application issues from an industry perspective, hoping to improve the application effect of plasma spraying technology, promote research in the field of surface modification of orthopedic implants, and help better develop clinical treatment in orthopedics in China.

References

Yuan H, Sun L, Meng Q, et al., 2024, Study on the Microstructure and Thermal Shock Resistance of Plasma Sprayed Cr2O3/8YSZ Composite Coating. Journal of Northwestern Polytechnical University, 42(04): 625–633.

Wu X, Yu M, Ge X, et al., 2024, Experimental Study on the Effect of Plasma Sprayed Tantalum Coated Titanium on Osseointegration in Rats. Journal of Practical Stomatology, 40(04): 473–479.

Cui Y, Guo M, Ma Y, et al., 2024, Preparation and Water Oxygen Corrosion Behavior of Si/Mullite+BASA/Yb2Si2O7 Environmental Barrier Coating by Atmospheric Plasma Spraying. Journal of Aeronautical Materials, 44(04): 37–45.

Zhang K, Zhang N, Deng Y, et al., 2024, Finite Element Study on the Influence of Surface Curvature and Matrix Thickness on Residual Stress in Plasma Spray Coating. Journal of Hefei University of Technology (Natural Science Edition), 47(06): 753–761.

Ma F, Guo X, He H, et al., 2024, Preparation and Mechanical Properties of Plasma Sprayed High-Strength and Tough Nano TiO2 Coating. Thermal Spray Technology, 16(02): 99–105 + 112.

Hu F, 2022, Study on the Structure and Properties of Polyether Ether Ketone Implant Plasma Spray Composite Biocoating, dissertation, South China University of Technology.

Liu S, Li K, Zheng X, 2019, Application Research of Plasma Sprayed Biological Coating on the Healing of Pathological Bone Defects. Surface Technology, 48(04): 1–9.