Abstract
Titanium-based composites with in-situ calcium and phosphor phases were prepared by powder metallurgy processing with titanium and hydroxyapatite (HA) powders. The mixtures were performed in a friction mill with alcohol for 5 hours, dried in a rotating evaporator, pressed at 600 MPa and sintered at 1200 °C for 2 hours in argon atmosphere. Crystal phases of the as-fabricated composite are found to be, α-Ti, CaTiO3, Ca3(PO 4)2 and TixPy phase(s). The analyses revealed that titanium particles were covered with a compact layer of TixPy and CaTiO 3 phases, which resulted from the decomposition of HA into CaTiO 3 and β-Ca3(PO4)2 at approximately 1025 °C. Then the reactions were followed by the decomposition of β-Ca3(PO4)2, resulting in the growth of CaTiO3 layer and in the nucleation and growth of Ti xPy phase(s). © 2011.
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Balbinotti, P., Gemelli, E., Buerger, G., De Lima, S. A., De Jesus, J., Camargo, N. H. A., … De Almeida Soares, G. D. (2011). Microstructure development on sintered Ti/HA biocomposites produced by powder metallurgy. Materials Research, 14(3), 384–393. https://doi.org/10.1590/S1516-14392011005000044
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