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dc.contributor.author MIRANDA HERNANDEZ, JOSE GUADALUPE
dc.contributor.author GONZALEZ MORAN, CARLOS OMAR
dc.contributor.author VARGAS HERNANDEZ, JESUS
dc.contributor.author CASARRUBIAS VARGAS, HERIBERTO
dc.contributor.author FLORES CUAUTLE, JOSE DE JESUS AGUSTIN
dc.contributor.author Refugio García, María Elizabeth
dc.creator MIRANDA HERNANDEZ, JOSE GUADALUPE; 47542
dc.creator GONZALEZ MORAN, CARLOS OMAR; 103970
dc.creator VARGAS HERNANDEZ, JESUS; 293801
dc.creator CASARRUBIAS VARGAS, HERIBERTO; 167638
dc.creator FLORES CUAUTLE, JOSE DE JESUS AGUSTIN; 207157
dc.creator Refugio García, María Elizabeth; 94317
dc.date.accessioned 2019-11-15T19:19:11Z
dc.date.available 2019-11-15T19:19:11Z
dc.date.issued 2019-04-15
dc.identifier.issn 1751-6161
dc.identifier.uri http://hdl.handle.net/20.500.11799/105038
dc.description.abstract CaO⋅Al2O3/CaTiO3 material was synthesized by a solid-state reaction. The effects of CaTiO3 formed into the CaO⋅Al2O3 during the synthesized process on the microstructure and mechanical properties were studied. CaCO3 was obtained from snail shells, Al2O3, and Ti powders were employed as a raw material. A chemical system with a 1:1 M ratio between CaCO3 and Al2O3 was formed, with an addition of 10 wt% Ti metallic particles. The microstructural analysis through optical microscopy, scanning electron microscopy, and X-ray diffraction was realized. The apparent density was determined by the Archimedes method, and the mechanical behavior (hardness, fracture toughness, and transversal elastic modulus) were also determined. XRD analysis revealed the formation of calcium aluminate phases such as CaAl2O4, CaAl4O7, and CaAl12O19; in addition, the CaTiO3 phase was also identified. The in-situ formation of CaTiO3 in the ceramic material, improves the mechanical properties such as the transversal elastic modulus and fracture toughness (48 GPa and 1.32 MPa m1/2, respectively) in comparison to the reference material (55 GPa and 0.43 MPa m1/2, respectively). Changes in the microstructural morphology, bulk density, and hardness values were also observed with a positive effect in the compound material. es
dc.language.iso eng es
dc.publisher Elsevier: Materials Chemistry and Physics es
dc.rights openAccess es
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject Powder processing; In-situ chemical reaction; Calcium aluminates; Calcium titanate; Microstructure and mechanical properties es
dc.subject.classification BIOLOGÍA Y QUÍMICA
dc.title Synthesis and Effect of CaTiO3 formation in CaO·Al2O3 by Solid-State Reaction from CaCO3· Al2O3 and Ti es
dc.type Artículo es
dc.provenance Científica es
dc.road Dorada es
dc.ambito Internacional es
dc.audience students es
dc.audience researchers es
dc.type.conacyt article
dc.identificator 2


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  • Título
  • Synthesis and Effect of CaTiO3 formation in CaO·Al2O3 by Solid-State Reaction from CaCO3· Al2O3 and Ti
  • Autor
  • MIRANDA HERNANDEZ, JOSE GUADALUPE
  • GONZALEZ MORAN, CARLOS OMAR
  • VARGAS HERNANDEZ, JESUS
  • CASARRUBIAS VARGAS, HERIBERTO
  • FLORES CUAUTLE, JOSE DE JESUS AGUSTIN
  • Refugio García, María Elizabeth
  • Fecha de publicación
  • 2019-04-15
  • Editor
  • Elsevier: Materials Chemistry and Physics
  • Tipo de documento
  • Artículo
  • Palabras clave
  • Powder processing; In-situ chemical reaction; Calcium aluminates; Calcium titanate; Microstructure and mechanical properties
  • Los documentos depositados en el Repositorio Institucional de la Universidad Autónoma del Estado de México se encuentran a disposición en Acceso Abierto bajo la licencia Creative Commons: Atribución-NoComercial-SinDerivar 4.0 Internacional (CC BY-NC-ND 4.0)

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