Processing of hydroxyapatite obtained by combustion synthesis

One of the reasons of implants failure are the stress forces appearing in the material–tissue interface due to the differences between their mechanical properties. For this reason, similar mechanical properties to the surrounding tissue are desirable. The synthesis of hydroxyapatite by solution comb...

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Main Authors: M. Canillas, R. Rivero, R. García-Carrodeguas, F. Barba, Miguel A. Rodríguez
Format: Article
Language:English
Published: Elsevier 2017-09-01
Series:Boletín de la Sociedad Española de Cerámica y Vidrio
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0366317517300456
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spelling doaj-a06767518aaf423892784c317551c2562020-11-24T22:39:15ZengElsevierBoletín de la Sociedad Española de Cerámica y Vidrio0366-31752017-09-0156523724210.1016/j.bsecv.2017.05.002Processing of hydroxyapatite obtained by combustion synthesisM. Canillas0R. Rivero1R. García-Carrodeguas2F. Barba3Miguel A. Rodríguez4Instituto de Cerámica y Vidrio (CSIC), C/Kelsen, 5, Madrid, SpainInstituto Nacional del Carbón (CSIC), C/Francisco Pintado Fe, 26, Oviedo, SpainAZUREBIO, Tres Cantos (Madrid), SpainInstituto de Cerámica y Vidrio (CSIC), C/Kelsen, 5, Madrid, SpainInstituto de Cerámica y Vidrio (CSIC), C/Kelsen, 5, Madrid, SpainOne of the reasons of implants failure are the stress forces appearing in the material–tissue interface due to the differences between their mechanical properties. For this reason, similar mechanical properties to the surrounding tissue are desirable. The synthesis of hydroxyapatite by solution combustion method and its processing have been studied in order to obtain fully dense ceramic bodies with improved mechanical strength. Combustion synthesis provides nanostructured powders characterized by a high surface area to facilitate the following sintering. Moreover, synthesis was conducted in aqueous and oxidizing media. Oxidizing media improve homogenization and increase the energy released during combustion. It gives rise to particles whose morphology and size suggest lower surface energies compared with aqueous media. The obtained powders were sintered by using a controlled sintering rate schedule. Lower surfaces energies minimize the shrinkage during sintering and relative densities measurements and diametral compression test confirm improved densification and consequently mechanical properties.http://www.sciencedirect.com/science/article/pii/S0366317517300456HydroxyapatiteSolution combustion synthesisRate controlled sinteringWeibull modulus
collection DOAJ
language English
format Article
sources DOAJ
author M. Canillas
R. Rivero
R. García-Carrodeguas
F. Barba
Miguel A. Rodríguez
spellingShingle M. Canillas
R. Rivero
R. García-Carrodeguas
F. Barba
Miguel A. Rodríguez
Processing of hydroxyapatite obtained by combustion synthesis
Boletín de la Sociedad Española de Cerámica y Vidrio
Hydroxyapatite
Solution combustion synthesis
Rate controlled sintering
Weibull modulus
author_facet M. Canillas
R. Rivero
R. García-Carrodeguas
F. Barba
Miguel A. Rodríguez
author_sort M. Canillas
title Processing of hydroxyapatite obtained by combustion synthesis
title_short Processing of hydroxyapatite obtained by combustion synthesis
title_full Processing of hydroxyapatite obtained by combustion synthesis
title_fullStr Processing of hydroxyapatite obtained by combustion synthesis
title_full_unstemmed Processing of hydroxyapatite obtained by combustion synthesis
title_sort processing of hydroxyapatite obtained by combustion synthesis
publisher Elsevier
series Boletín de la Sociedad Española de Cerámica y Vidrio
issn 0366-3175
publishDate 2017-09-01
description One of the reasons of implants failure are the stress forces appearing in the material–tissue interface due to the differences between their mechanical properties. For this reason, similar mechanical properties to the surrounding tissue are desirable. The synthesis of hydroxyapatite by solution combustion method and its processing have been studied in order to obtain fully dense ceramic bodies with improved mechanical strength. Combustion synthesis provides nanostructured powders characterized by a high surface area to facilitate the following sintering. Moreover, synthesis was conducted in aqueous and oxidizing media. Oxidizing media improve homogenization and increase the energy released during combustion. It gives rise to particles whose morphology and size suggest lower surface energies compared with aqueous media. The obtained powders were sintered by using a controlled sintering rate schedule. Lower surfaces energies minimize the shrinkage during sintering and relative densities measurements and diametral compression test confirm improved densification and consequently mechanical properties.
topic Hydroxyapatite
Solution combustion synthesis
Rate controlled sintering
Weibull modulus
url http://www.sciencedirect.com/science/article/pii/S0366317517300456
work_keys_str_mv AT mcanillas processingofhydroxyapatiteobtainedbycombustionsynthesis
AT rrivero processingofhydroxyapatiteobtainedbycombustionsynthesis
AT rgarciacarrodeguas processingofhydroxyapatiteobtainedbycombustionsynthesis
AT fbarba processingofhydroxyapatiteobtainedbycombustionsynthesis
AT miguelarodriguez processingofhydroxyapatiteobtainedbycombustionsynthesis
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