Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method

Cordierite ceramic was fabricated by reducing Al2O3 mole ratio from 2.0 to 1.4 with kaolin, silicon dioxide and magnesium oxide as the raw materials. The effect of reduced Al2O3 mole ratio on the sintering behaviors, phase transition, main properties, and microstructure were characterized i...

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Main Authors: Li Ye, Zhao Hengze
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2019-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2019/0350-820X1902189L.pdf
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spelling doaj-1de2bec28dc74fe2b5dfb68c4c2352452020-11-24T20:44:10ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X1820-74132019-01-0151218919710.2298/SOS1902189L0350-820X1902189LEffect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering methodLi Ye0Zhao Hengze1College of Mining Engineering, North China University of Science and Technology, Tangshan, Hebei, PR ChinaCollege of Mining Engineering, North China University of Science and Technology, Tangshan, Hebei, PR ChinaCordierite ceramic was fabricated by reducing Al2O3 mole ratio from 2.0 to 1.4 with kaolin, silicon dioxide and magnesium oxide as the raw materials. The effect of reduced Al2O3 mole ratio on the sintering behaviors, phase transition, main properties, and microstructure were characterized in detail. The results show that cordierite phase becomes the main crystallization phase at 1300°C, and mullite phase can be consumed to produce cordierite phase by reducing Al2O3 mole ratio. But additional quartz phase still exists until 1400°C. Moreover, the open porosity, pore connectivity and pore size increase as Al2O3 mole ratio reduces from 2.0 to 1.4 while the linear shrinkage percent and bulk density decrease with the reduced Al2O3. It is considered that the sintering activity of the raw materials at low temperature decreases due to the increase of chemically pure magnesium oxide and silica with the decrease of Al2O3 mole ratio, while the crystallization process, pore growth and cordierite phase rather than the liquid phase control the densification process at high temperature.http://www.doiserbia.nb.rs/img/doi/0350-820X/2019/0350-820X1902189L.pdfcordieritesolid-state sinteringreducing al2o3crystallizationdensification
collection DOAJ
language English
format Article
sources DOAJ
author Li Ye
Zhao Hengze
spellingShingle Li Ye
Zhao Hengze
Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
Science of Sintering
cordierite
solid-state sintering
reducing al2o3
crystallization
densification
author_facet Li Ye
Zhao Hengze
author_sort Li Ye
title Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
title_short Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
title_full Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
title_fullStr Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
title_full_unstemmed Effect of reduced Al2O3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
title_sort effect of reduced al2o3 mole ratio on fabrication of cordierite ceramic by solid-state sintering method
publisher International Institute for the Science of Sintering, Beograd
series Science of Sintering
issn 0350-820X
1820-7413
publishDate 2019-01-01
description Cordierite ceramic was fabricated by reducing Al2O3 mole ratio from 2.0 to 1.4 with kaolin, silicon dioxide and magnesium oxide as the raw materials. The effect of reduced Al2O3 mole ratio on the sintering behaviors, phase transition, main properties, and microstructure were characterized in detail. The results show that cordierite phase becomes the main crystallization phase at 1300°C, and mullite phase can be consumed to produce cordierite phase by reducing Al2O3 mole ratio. But additional quartz phase still exists until 1400°C. Moreover, the open porosity, pore connectivity and pore size increase as Al2O3 mole ratio reduces from 2.0 to 1.4 while the linear shrinkage percent and bulk density decrease with the reduced Al2O3. It is considered that the sintering activity of the raw materials at low temperature decreases due to the increase of chemically pure magnesium oxide and silica with the decrease of Al2O3 mole ratio, while the crystallization process, pore growth and cordierite phase rather than the liquid phase control the densification process at high temperature.
topic cordierite
solid-state sintering
reducing al2o3
crystallization
densification
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2019/0350-820X1902189L.pdf
work_keys_str_mv AT liye effectofreducedal2o3moleratioonfabricationofcordieriteceramicbysolidstatesinteringmethod
AT zhaohengze effectofreducedal2o3moleratioonfabricationofcordieriteceramicbysolidstatesinteringmethod
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