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Information Journal Paper

Title

STUDY OF THE ALUMINA CERAMIC COATING ON 316L STAINLESS STEEL SURFACE BY ELECTROLYTIC PLASMA PROCESS

Pages

  35-44

Abstract

 Alumina ceramic coating was developed on 316 L stainless steel in order to improve the surface characteristics and increase the corrosion resistance of implants used in the body by employing plasma electrolytic coating process. Electrolytic bath, containing sodium carbonate and aluminum nitrate was prepared and thereafter the samples were coated with optimal voltage and direct current. The chemical composition of the samples were studied by X-ray diffraction analysis (XRD) and the surface morphology of the coated samples was studied by scanning electron microscopy. Hardness and wear properties of coated and uncoated samples in Ringer’s solution were studied and compared. Electrochemical corrosion behavior, as an indication of corrosion resistance of samples, were evaluated in physiological solution. The results of Mechanical testing showed that improving the behavior of ALUMINA coated samples to compare with the one. Microstructures investigation revealed that the optimal time of coating was 10 minutes. XRD analysis was showed that a-Al2O3 phase formed in the coating. The corrosion resistance of ALUMINA coaed samples were increased due to redused corrosion current and increased potential.

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  • Cite

    APA: Copy

    AFIFITASOJI, Z., PAKSHIR, M., & HADIYANFAR, M.J.. (2015). STUDY OF THE ALUMINA CERAMIC COATING ON 316L STAINLESS STEEL SURFACE BY ELECTROLYTIC PLASMA PROCESS. JOURNAL OF NEW MATERIALS, 5(3 (19)), 35-44. SID. https://sid.ir/paper/169990/en

    Vancouver: Copy

    AFIFITASOJI Z., PAKSHIR M., HADIYANFAR M.J.. STUDY OF THE ALUMINA CERAMIC COATING ON 316L STAINLESS STEEL SURFACE BY ELECTROLYTIC PLASMA PROCESS. JOURNAL OF NEW MATERIALS[Internet]. 2015;5(3 (19)):35-44. Available from: https://sid.ir/paper/169990/en

    IEEE: Copy

    Z. AFIFITASOJI, M. PAKSHIR, and M.J. HADIYANFAR, “STUDY OF THE ALUMINA CERAMIC COATING ON 316L STAINLESS STEEL SURFACE BY ELECTROLYTIC PLASMA PROCESS,” JOURNAL OF NEW MATERIALS, vol. 5, no. 3 (19), pp. 35–44, 2015, [Online]. Available: https://sid.ir/paper/169990/en

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