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[Current evolution of plasma sprayed hydroxyapatite coating].

Y Lü1, R Zhu, T Lei

  • 1College of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001.

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi = Journal of Biomedical Engineering = Shengwu Yixue Gongchengxue Zazhi
|October 19, 2001
PubMed
Summary
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This review examines plasma-sprayed hydroxyapatite coatings for implants, focusing on improving coating integrity and adhesion. Functionally gradient materials offer a promising solution for enhanced implant performance.

Area of Science:

  • Biomaterials Science
  • Materials Engineering
  • Orthopedic Implants

Context:

  • Hydroxyapatite coatings are crucial for biomedical implants, particularly in orthopedic applications.
  • Plasma spraying is a common technique for applying these hydroxyapatite coatings.
  • Interfacial issues, such as cracking between titanium and ceramic layers, are significant challenges.

Purpose:

  • To review the processing and properties of plasma-sprayed hydroxyapatite (HA) coatings.
  • To investigate factors affecting coating integrity and adhesion strength.
  • To explore the potential of functionally gradient materials (FGMs) for improving implant coatings.

Summary:

  • This review synthesizes information on hydroxyapatite (HA) ceramic characteristics and plasma spraying technology.

Related Experiment Videos

  • It analyzes titanium-ceramic interfacial cracking and component design strategies for HA-based composite coatings.
  • The study highlights the need to enhance coating integrality and adhesion strength in implant systems.
  • Impact:

    • Identifies functionally gradient materials as a novel approach to overcome limitations in current implant coating technology.
    • Provides insights into improving the durability and performance of hydroxyapatite coatings in biomedical applications.
    • Contributes to the development of more robust and reliable orthopedic implants.