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Please use this identifier to cite or link to this item: https://hdl.handle.net/11532/336572
Title : Development of a TiNbTaMoZr-Based High Entropy Alloy with Low Young´s Modulus by Mechanical Alloying Route
Author : Normand, Juliette
Moriche, Rocío
García-Garrido, Cristina
Sepúlveda Ferrer, Ranier Enrique
Chicardi, Ernesto
Date issued: 2020
Source: Metals, 2020, vol.10.
Document Type: Artículo publicación periódica
Thematic descriptors: Aleación
Titanio
Metal
Language ISO: eng
Abstract: In this work, an equiatomic TiNbTaMoZr-based high-entropy alloy (HEA) has been developed by a powder metallurgy route, which consists of a process of combined one-step low-temperature mechanical milling starting from the transition metals as raw materials and a subsequent pressureless sintering. In this way, the optimized synthesized specimen, after 10 h of milling time, showed two di erent body-centered cubic (bcc) TiNbTaMoZr alloys, which, after sintering at 1450 C, 1 h of dwell time and a heating and cooling rate of 5 C min􀀀1, it remained formed as two bcc TiNbTaMoZr-based HEAs. This material, with micrometric and equiaxed particles, and with homogeneously distributed phases, presented a Young’s modulus that was significantly higher (5.8 GPa) and lower (62.1 GPa) than that of the usual commercially pure (cp) Ti and Ti6Al4V alloy used for bone-replacement implants. It also presented similar values to those of the HEAs developed for the same purpose. These interesting properties would enable this TiNbTaMoZr-based HEA to be used as a potential biomaterial for bulk or porous bone implants with high hardness and low Young´s modulus, thereby preventing the appearance of stress-shielding phenomena.
Publisher : MDPI
ISSN: MIAR
2075-4701
Rights: © Instituto Andaluz del Patrimonio Histórico
Rights URL: https://creativecommons.org/licenses/by-sa/4.0/deed.es
Date accessioned: 2021-05-03T10:59:04Z
Date available: 2021-05-03T10:59:04Z
Format: application/pdf
URI: https://hdl.handle.net/11532/336572
DOI: doi:10.3390/met10111463
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