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INVESTIGATING CORROSION BEHAVIORS OF ANODIZED METALLIC IMPLANTS BY ELECTROCHEMICAL ANALYSIS

Md. Shafinur Murad, Ramazan Asmatulu

2016encorrosionanodizedimplantselectrochemicalbiomaterials

Abstract

Language:

Biomaterials are used in implantations inside the human body and have been a reliable method for a long time but no comprehensive study has focused on the corrosion behaviors of anodized metallic implants under electrochemical analysis. This research aims to investigate these corrosion behaviors and understand the electrochemical properties associated with anodized titanium implants. The methodology involved subjecting anodized titanium samples to various electrochemical tests to analyze their corrosion resistance and behavior in physiological conditions. Results show that anodizing significantly enhances the corrosion resistance of titanium implants by creating a protective oxide layer. This improvement in corrosion behaviors under simulated physiological conditions indicates that anodized titanium can be a viable option for long-term implantation in biomedical applications. Furthermore, the electrochemical analysis provided insight into the anodization process's effectiveness, discussing the implications for future research and applications in the field of biomedical engineering.

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Cite This Work

@article{3874972f-67d0-44af-96fc-6183a4bd0311,
  title={INVESTIGATING CORROSION BEHAVIORS OF ANODIZED METALLIC IMPLANTS BY ELECTROCHEMICAL ANALYSIS},
  author={Md. Shafinur Murad and Ramazan Asmatulu},
  year={2016},
  language={en}
}
TY  - JOUR
TI  - INVESTIGATING CORROSION BEHAVIORS OF ANODIZED METALLIC IMPLANTS BY ELECTROCHEMICAL ANALYSIS
AU  - Md. Shafinur Murad
AU  - Ramazan Asmatulu
PY  - 2016
LA  - en
ER  -

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