Memorias de investigación
Artículos en revistas:
Effect of Nanosilica additions on Belite Cements Pastes Held in Sulfate Solutions
Año:2007

Áreas de investigación
  • Ingeniería de construcción

Datos
Descripción
Fly Ash Belite Cement (FABC) pastes with and without nanosilica additions have been prepared and maintained in sulfate solutions (Na2SO4 0.5M) for 180 days. The mechanical performance and the changes in microstructure have been monitored at 28, 90, and 180 days by compressive strength, X-ray diffraction (XRD), and 29Si MAS NMR measurements. We have found that, unexpectedly, and contrary to what happens in Ordinary Portland Cements (OPC), the addition of nanosilica particles induces an initial decline in the compressive strength of the samples. Only in samples maintained for a long time (180 days) does the nanosilica addition improve the mechanical properties. Our XRD and 29Si NMR experiments have revealed that although nanosilica additions trigger the consumption of Belite phases, this is not always accompanied by formation of longer calcium¿silicate¿hydrate (C¿S¿H) gel structures. Only at a long time (180 days), and due to a mechanism that seems to be controlled by the pH of the samples, do the nanosilica additions lead to high-polymerized C¿S¿H gels.
Internacional
Si
JCR del ISI
Si
Título de la revista
J AM CERAM SOC
ISSN
0002-7820
Factor de impacto JCR
1,792
Información de impacto
Volumen
90
DOI
Número de revista
12
Desde la página
3973
Hasta la página
3976
Mes
JULIO
Ranking

Esta actividad pertenece a memorias de investigación

Participantes
  • Autor: A. Porro
  • Autor: J. S. Dolado LABEIN - TECNALIA
  • Autor: I. Campillo LABEIN - TECNALIA
  • Autor: Sara Goñi Elizalde UPM
  • Autor: E. Erkizia
  • Autor: Ana Guerrero Bustos UPM
  • Autor: J. A. Ibáñez

Grupos de investigación, Departamentos, Centros e Institutos de I+D+i relacionados
  • Creador: Grupo de Investigación: Tecnología de la Construcción y Ciencia de los Materiales para la edificación y la obra Civil
  • Departamento: Ingeniería Civil: Construcción