Preparation and Characterization of Biphasic Calcium Phosphate Coatings on 316L Stainless Steel Fabricated by Electrophoretic Deposition

Article Preview

Abstract:

Biphasic calcium phosphate (BCP) ceramic is a synthetic biomaterial exhibiting a chemical composition similar to that of tooth mineral. Therefore, it is viably used in coating metallic implants manufactured from metals and alloys, such as titanium and stainless steel. In the present study, electrophoretic deposition (EPD) has been attempted for depositing BCP coatings on 316L Stainless Steel substrate followed by vacuum sintering at 800 °C for 1 h. The surface morphology, thickness, compositions and microstructure of the BCP coated 316L SS was investigated by scanning electron microscope (SEM), energy dispersive spectrometer (EDS), X-ray diffraction (XRD) and the bond strength of the coating was measured.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

373-377

Citation:

Online since:

December 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] X. Hou, X. Liu, J. Xu, J. Shen and X. Liu: Mater. Lett. Vol. 50 (2001) 103-107.

Google Scholar

[2] D.M. Liu, Q. Yang and T. Troczynski: J. Biomaterials. Vol. 23 (2002) 691-693.

Google Scholar

[3] S.K. Yen and C.M. Lin: J. Mater. Chem. Phys. Vol. 77 (2002), pp.70-76.

Google Scholar

[4] M. Javidi, S. Javadpour, M. E. Bahrololoom and J. Ma: J. Mater. Sci. Eng. Vol. 28 (2008) 1509-1515.

Google Scholar

[5] B. T. Lee, D.V. Quang, M. H. Youn and H. Y. Song: J. Mater. Sci. Mater Med Vol. 19 (2008) 2223–2229.

Google Scholar

[6] G. Daculsi: J. Biomaterials. Vol. 19 (1998) 1473-1478.

Google Scholar

[7] M. Bohner: Vol. 31 Suppl. 4, (2000), pp.37-47.

Google Scholar

[8] G. Grimandi, P. Weiss, F. Millot and G. Daculsi: J. Biomed. Mater. Res. Vol. 39 (1998), 660–666.

DOI: 10.1002/(sici)1097-4636(19980315)39:4<660::aid-jbm22>3.0.co;2-9

Google Scholar

[9] R.W.N. Nilen and P.W. Richter: J. Master. Sci. Master. Med. Vol. 19 (2008) 1693-1702.

Google Scholar

[10] J. Ma, C. Wang and K.W. Peng: J. Biomaterials. Vol. 24 (2003) 3505-3510.

Google Scholar

[11] B. Mavis and A. C. TAS: Journal of the American Ceramic Society, Vol 83 (4) (2000), 989-991.

Google Scholar

[12] M. Wei, A. J. Ruys, B. K. Milthorpe, C. C. Sorrell And J. H. Evans: Journal of Sol-Gel Science and Technology, Vol. 21 (2001), 39–48.

DOI: 10.1023/a:1011201414651

Google Scholar

[13] B. Ferrari, A. J. Sanchez-Herencia and R. Moreno: Mater. Lett. Vol. 35 (1998), 370–374.

Google Scholar

[14] L. Vandeperre, O Van der Biest and W. J Clegg: Key Eng. Mater Vol. 567, (1997)127-131.

Google Scholar

[15] J. Basu, H. Bousbaa, E. Logarinho, Z. Li, B.C. Williams, C. Lopes, C.E. Sunkel and M.L. Goldberg: (1999).

Google Scholar

[16] D. C. Wolf, K. T. Morgan, E. A. Gross, C. Barrow, O. R. Moss, R. A. James and JA Popp: Fundam. Appl. Toxicol. Vol. 24 (1995), 111-131.

Google Scholar

[17] E. Caroline Victoria and F. D. Gnanam: Artif. Organs. Vol. 16 (2002) 12-14.

Google Scholar

[18] ASTM Stand., F 1044-87.

Google Scholar

[19] J.M. Bouler, R.Z. LeGeros and G. Daculsi: J Biomed Mater Res. Vol. 51 (2002), 680-684.

Google Scholar

[20] O. E. Petrov, E. Dyulgerrova, L. Petrov, R. Ropova: Mater Lett. Vol. 48 (2001), 162-167.

Google Scholar

[21] O.S. Yildirim, B. Aksakal, H. Celik, Y. Vangolu and A. Okur: Med. Eng. Phys Vol. 221-224 (2005), p.27(3).

Google Scholar

[22] O.S. Yildirim, B. Aksakal, S. C. Hanyaloglu, F. Erdogan and A. Okur: Spine Vol. 31(8) (2006), p.215.

Google Scholar