Processing and mechanical characteristics of magnesium-hydroxyapatite metal matrix biocomposites
Editorial:
Elsevier
Fecha de edición:
2017-05-01
Cita:
Del Campo, R., Savoini, B., Muñoz, A., Monge, M. A., & Pareja, R. (2017). Processing and mechanical characteristics of magnesium-hydroxyapatite metal matrix biocomposites. Journal of the Mechanical Behavior of Biomedical Materials, 69, 135-143
ISSN:
1751-6161
Patrocinador:
Comunidad de Madrid
Agradecimientos:
This work has been supported by the Regional Government of Madrid through the S2013/MIT-2862-MULTIMAT-CHALLENGE Program. R del Campo thanks to the Universidad Carlos III de Madrid for the support.
Proyecto:
Comunidad de Madrid. S2013/MIT-2862-MULTIMAT-CHALLENGE
Palabras clave:
Biocomposite
,
Magnesium
,
Hydroxyapatite
,
Strain hardening
,
Texture hardening
,
Strain-hardening behavior
,
Grain-size dependence
,
Corrosion behavior
,
Pure magnesium
,
Alloys
,
Deformation
,
Composites
,
Bone
Derechos:
© Elsevier, 2017
Atribución-NoComercial-SinDerivadas 3.0 España
Resumen:
Magnesium/hydroxyapatite composites were produced by conventional extrusion and their mechanical behavior studied under uniaxial compression at room temperature. The results evidence the capability of the HA for strengthening the Mg material, lowering its micr
Magnesium/hydroxyapatite composites were produced by conventional extrusion and their mechanical behavior studied under uniaxial compression at room temperature. The results evidence the capability of the HA for strengthening the Mg material, lowering its microstructural anisotropy and inhibiting deformation twinning. They also reveal that the ECAP processing is effective for improving the grain structure and reducing the crystallographic texture of these composites, giving rise to a significant enhancement of their yield strength and microhardness although the ultimate compressive stress worsens. The analysis of the strain hardening rate of the flow curves demonstrates that the HA addition and the ECAP processing are also effective in inhibiting non-basal dislocation slip.
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