EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD

Alumina – 20 vol% zirconia (ZTA) nanocomposites were synthesized by the tartaric acid sol-gel method. The precursors gelled from solutions at different pH were prepared and then calcined from 1000 to 1500°C. Surface area measurement (BET), X-ray diffraction (XRD), scanning electron microscopy (SEM)...

Full description

Bibliographic Details
Main Authors: Mustafa Tuncer, Hasan Gocmez
Format: Article
Language:English
Published: University of Chemistry and Technology, Prague 2012-07-01
Series:Ceramics-Silikáty
Subjects:
pH
Online Access:http://www.ceramics-silikaty.cz/2012/pdf/2012_02_107.pdf
id doaj-469953e003a74beba747cfc33b8a9fa8
record_format Article
spelling doaj-469953e003a74beba747cfc33b8a9fa82020-11-24T23:07:25ZengUniversity of Chemistry and Technology, PragueCeramics-Silikáty0862-54681804-58472012-07-01562107111EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHODMustafa TuncerHasan GocmezAlumina – 20 vol% zirconia (ZTA) nanocomposites were synthesized by the tartaric acid sol-gel method. The precursors gelled from solutions at different pH were prepared and then calcined from 1000 to 1500°C. Surface area measurement (BET), X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were used to characterize the synthesized powders. Control of agglomeration state was carried out by changing the pH of the solution. Weakly agglomerated powders were obtained at pH=6, whereas the solution at pH=1 revealed hard agglomerated powders, (agglomeration degrees, N, were found to be 16425 at pH=1 and 102 at pH=6, respectively). The pH dependence of agglomeration was explained by the dissociation behavior of tartaric acid at various pH environments. XRD results showed that the powders have been fully tetragonal phase at 1000°C, while they exhibited tetragonal zirconia with minor monoclinic phase as well as a-Al2O3 at 1500°C. The presence of a-Al2O3 in the nanocrystalline composite contributes the wide range of temperature stability for t-ZrO2 up to 1500°C. TEM micrograph confirmed that alumina and zirconia were dispersed homogenously. Mechanical properties (hardness and indentation fracture toughness) of sintered samples were also determined.http://www.ceramics-silikaty.cz/2012/pdf/2012_02_107.pdfComposite materialSol-gelAgglomerationpH
collection DOAJ
language English
format Article
sources DOAJ
author Mustafa Tuncer
Hasan Gocmez
spellingShingle Mustafa Tuncer
Hasan Gocmez
EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
Ceramics-Silikáty
Composite material
Sol-gel
Agglomeration
pH
author_facet Mustafa Tuncer
Hasan Gocmez
author_sort Mustafa Tuncer
title EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
title_short EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
title_full EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
title_fullStr EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
title_full_unstemmed EFFECTS OF PH ON AGGLOMERATION STATE OF Al2O3 – ZrO2 (ZTA) NANOCOMPOSITE POWDERS SYNTHESIZED BY TARTARIC GEL METHOD
title_sort effects of ph on agglomeration state of al2o3 – zro2 (zta) nanocomposite powders synthesized by tartaric gel method
publisher University of Chemistry and Technology, Prague
series Ceramics-Silikáty
issn 0862-5468
1804-5847
publishDate 2012-07-01
description Alumina – 20 vol% zirconia (ZTA) nanocomposites were synthesized by the tartaric acid sol-gel method. The precursors gelled from solutions at different pH were prepared and then calcined from 1000 to 1500°C. Surface area measurement (BET), X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were used to characterize the synthesized powders. Control of agglomeration state was carried out by changing the pH of the solution. Weakly agglomerated powders were obtained at pH=6, whereas the solution at pH=1 revealed hard agglomerated powders, (agglomeration degrees, N, were found to be 16425 at pH=1 and 102 at pH=6, respectively). The pH dependence of agglomeration was explained by the dissociation behavior of tartaric acid at various pH environments. XRD results showed that the powders have been fully tetragonal phase at 1000°C, while they exhibited tetragonal zirconia with minor monoclinic phase as well as a-Al2O3 at 1500°C. The presence of a-Al2O3 in the nanocrystalline composite contributes the wide range of temperature stability for t-ZrO2 up to 1500°C. TEM micrograph confirmed that alumina and zirconia were dispersed homogenously. Mechanical properties (hardness and indentation fracture toughness) of sintered samples were also determined.
topic Composite material
Sol-gel
Agglomeration
pH
url http://www.ceramics-silikaty.cz/2012/pdf/2012_02_107.pdf
work_keys_str_mv AT mustafatuncer effectsofphonagglomerationstateofal2o3zro2ztananocompositepowderssynthesizedbytartaricgelmethod
AT hasangocmez effectsofphonagglomerationstateofal2o3zro2ztananocompositepowderssynthesizedbytartaricgelmethod
_version_ 1725618376636628992