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Please use this identifier to cite or link to this item: https://hdl.handle.net/11532/337512
Title : Development of a novel TiNbTa material potentially suitable for bone replacement implants
Author : Chicardi, Ernesto
Gutiérrez-González, C.F
Sayagués de Vega, María Jesús
García-Garrido, Cristina
Date issued: 2018
Source: Materials and Design, 2018, n.145, pp. 88-96
Document Type: Artículo publicación periódica
Thematic descriptors: Materiales
Hueso
Aleación
Language ISO: eng
Abstract: A novel (β + γ)-TiNbTa alloy has been developed by a combined low energy mechanical alloying (LEMA) and pulsed electric current sintering process (PECS). Microstructurally, this material presents interesting characteristics, such as a submicrometric range of particle size, a body-centered phase (β-TiNbTa) and, mainly, a novel facecentered cubic Ti-based alloy (γ-TiNbTa) not previously reported. Related tomechanical performance, the novel (β + γ)-TiNbTa shows a lower E (49 ± 3 GPa) and an outstanding yield strength (σy N 1860 MPa). This combination of original microstructure and properties makes to the (β + γ)-TiNbTa a novel material potentially suitable as biomaterial to fabricate bone replacement implants, avoiding the undesirable and detrimental stressshielding problem and even the usual damage on the mechanical strength of Ti-based foams biomaterials.
Publisher : Elsevier
ISSN: MIAR
0264-1275
Rights: © Instituto Andaluz del Patrimonio Histórico
Rights URL: http://creativecommons.org/licenses/by-nc-sa/3.0/deed.es
Date accessioned: 2021-08-09T09:03:58Z
Date available: 2021-08-09T09:03:58Z
Format: application/pdf
URI: https://hdl.handle.net/11532/337512
DOI: https://doi.org/10.1016/j.matdes.2018.02.042
Appears in Collections: Artículos en publicaciones seriadas
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