Comparison of Sintering and Mechanical Properties of Hydroxyapatite and Silicon-Substituted Hydroxyapatite

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Key Engineering Materials (Volumes 240-242)

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Edited by:

Besim Ben-Nissan, Doron Sher, William Walsh

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919-922

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N. Patel et al., "Comparison of Sintering and Mechanical Properties of Hydroxyapatite and Silicon-Substituted Hydroxyapatite", Key Engineering Materials, Vols. 240-242, pp. 919-922, 2003

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May 2003

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[4] N. Patel, I.R. Gibson, K.A. Hing, S.M. Best, E. Damien, P.A. Revell and W. Bonfield: Bioceramics 14, PalmSprings, USA (2001), p.383.

[5] N. Patel, I.R. Gibson, K.A. Hing, S.M. Best, P.A. Revell and W. Bonfield, J. Mat. Sci. Mater. In Med. (In press).

[6] J.E. Barralet, PhD thesis, University of London, (1995).

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[8] Wolver and G.M. Pharr, J. Mater. Res. Vol. 7 (1992) p.1564 Acknowledgement: EPSRC are gratefully acknowledged for their funding to N. P.

[2] [4] [6] [8] 10800 900 1000 1100 1200 1300 Hardness (GPa) HA 0. 8SiHA 1. 6SiHA Sintering temperature (°°°°C) Figure 4. Effect of silicon substitution/carbonate adsorption and sintering temperature on the hardness of HA ceramics.

[10] [20] [30] [40] [50] [60] [70] [80] 800 900 1000 1100 1200 1300 Youngs' modulus (GPa) HA 0. 8SiHA 1. 6 SiHA Figure 5. Effect of silicon substitution/carbonate adsorption and sintering temperature on the Young's modulus of HA ceramics Sintering temperature (°°°°C).

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