Publication:
Physical, mechanical properties and antimicrobial analysis of a novel CaO·Al2O3 compound reinforced with Al or Ag particles

dc.contributor.authorGómez de Saravia, Sandra Gabriela
dc.contributor.authorRastelli, Silvia Elena
dc.contributor.authorOrtega-Avilés, Mayahuel
dc.contributor.authorGonzález-Morán, Carlos O.
dc.contributor.authorRocha-Rangel, Enrique
dc.contributor.authorMiranda-Hernández, José G.
dc.date.issued2019
dc.descriptionFil: Gómez de Saravia, Sandra Gabriela. Universidad Nacional de La Plata. Facultad de Ciencias Naturales y Museo; Argentina. Fil: Gómez de Saravia, Sandra Gabriela. Universidad Nacional de La Plata. Facultad de Ciencias Exactas; Argentina. Fil: Gómez de Saravia, Sandra Gabriela. Comisión de Investigaciones Científicas de la Provincia de Buenos Aires (CIC); Argentina. Fil: Gómez de Saravia, Sandra Gabriela. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina.
dc.descriptionFil: Rastelli, Silvia Elena. Universidad Nacional de La Plata. Facultad de Ciencias Naturales y Museo; Argentina.
dc.descriptionFil: Ortega-Avilés, Mayahuel. Instituto Politécnico Nacional; México.
dc.descriptionFil: González-Morán, Carlos O. Universidad Nacional Autónoma de México; México.
dc.descriptionFil: Rocha-Rangel, Enrique. Universidad Politécnica de Victoria; México.
dc.descriptionFil: Miranda-Hernández, José G. Universidad Nacional Autónoma de México; México.
dc.description.abstractCeramic-metal (CaO·Al2O3–Al and CaO·Al2O3–Ag) compounds were prepared by mechanical milling and consolidated through an in-situ sintering process. The aim of this work is to study the effects of the Al and Ag particles to ceramic-base compound, primarily in the microstructure, and its mechanical and antimicrobial properties. Chemical systems with a 1:1M ratio between CaCO3 and Al2O3 powder were formed, with the addition of 10 wt% Al or 10 wt% Ag, respectively. The compound material that consolidated were microstructurally characterized through X-ray diffraction, scanning electron microscopy, optic microscopy, and X-ray computed tomography. In addition, the hardness, the fracture toughness, the transversal elastic modulus, and the antimicrobial property were evaluated. The results of X-ray diffraction identified the formation of the calcium aluminate phases, such as CaO·6Al2O3 (hibonite:CA6), CaO·2Al2O3 (grossite:CA2), and CaO·Al2O3 (krotite:CA); as well as Al and Ag were identified in its respective system. In addition, the mechanical properties show changes compared to the reference material that was synthesized under the same conditions and, finally, these materials also have an antimicrobial effect, against the Staphylococcus bacterium that is common in the oral cavity, when studied in synthetic saliva.
dc.formatapplication/pdf
dc.identifier.doihttps://doi.org/10.1016/j.jmbbm.2019.05.041
dc.identifier.urihttps://naturalis.fcnym.unlp.edu.ar/handle/628872547/58070
dc.language.isoeng
dc.sourceJournal of the Mechanical Behavior of Biomedical Materials. 2019;97:385-395
dc.subjectCalcium aluminate-metal
dc.subjectMetallic particles
dc.subjectSnail shell powder
dc.subjectSolid state reactions
dc.subjectMechanical properties
dc.subjectAntimicrobial analysis
dc.titlePhysical, mechanical properties and antimicrobial analysis of a novel CaO·Al2O3 compound reinforced with Al or Ag particles
dc.typeArtículo
dspace.entity.typePublication
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