Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders

Barium strontium titanate powders with different Ba:Sr ratios were investigated to determine the influence of the initial composition of powder mixture on microstructural properties and sintering kinetics. It was determined that BaCO3 and SrCO3 react differently to mixing, resulting in B...

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Main Authors: Kosanović D.A., Blagojević V.A., Labus N.J., Tadić N.B., Pavlović V.B., Ristić M.M.
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2018-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2018/0350-820X1801029K.pdf
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author Kosanović D.A.
Blagojević V.A.
Labus N.J.
Tadić N.B.
Pavlović V.B.
Ristić M.M.
author_facet Kosanović D.A.
Blagojević V.A.
Labus N.J.
Tadić N.B.
Pavlović V.B.
Ristić M.M.
author_sort Kosanović D.A.
collection DOAJ
description Barium strontium titanate powders with different Ba:Sr ratios were investigated to determine the influence of the initial composition of powder mixture on microstructural properties and sintering kinetics. It was determined that BaCO3 and SrCO3 react differently to mixing, resulting in Ba0.5Sr0.5CO3 in the sample with 80% Ba and different contents of Ba1- xSrxTiO3 in samples with 50% and 20% Ba. In addition, the morphology is also different, with higher Sr content leading to larger particles size and less agglomeration. The different chemical content of the initial powder mixture also has a marked impact on the sintering process: the onset of sintering shifts towards higher temperature with higher Sr content, while the average apparent activation energy of sintering is the highest for the sample with 80% Ba and the lowest for the mixture with 50% Ba. In addition, hexagonal-to-cubic phase transformation was observed in parallel with the sintering process, where the position of the phase transition shifts to lower temperatures with an increase in Sr content. This is consistent with the behavior of low-temperature phase transitions of BST. The phase transition was not observed in sintered samples, suggesting that there is a size-dependence of the phase transition temperature. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. OI 172057]
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spelling doaj.art-cb543d4636554e3fa1a4552390ba33932022-12-22T01:17:25ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X1820-74132018-01-01501293810.2298/SOS1801029K0350-820X1801029KEffect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powdersKosanović D.A.0Blagojević V.A.1Labus N.J.2Tadić N.B.3Pavlović V.B.4Ristić M.M.5Institute of Technical Sciences of the Serbian Academy of Sciences and Arts, BelgradeInstitute of Technical Sciences of the Serbian Academy of Sciences and Arts, BelgradeInstitute of Technical Sciences of the Serbian Academy of Sciences and Arts, BelgradeFaculty of Physics, BelgradeInstitute of Technical Sciences of the Serbian Academy of Sciences and Arts, BelgradeSerbian Academy of Sciences and Arts, BelgradeBarium strontium titanate powders with different Ba:Sr ratios were investigated to determine the influence of the initial composition of powder mixture on microstructural properties and sintering kinetics. It was determined that BaCO3 and SrCO3 react differently to mixing, resulting in Ba0.5Sr0.5CO3 in the sample with 80% Ba and different contents of Ba1- xSrxTiO3 in samples with 50% and 20% Ba. In addition, the morphology is also different, with higher Sr content leading to larger particles size and less agglomeration. The different chemical content of the initial powder mixture also has a marked impact on the sintering process: the onset of sintering shifts towards higher temperature with higher Sr content, while the average apparent activation energy of sintering is the highest for the sample with 80% Ba and the lowest for the mixture with 50% Ba. In addition, hexagonal-to-cubic phase transformation was observed in parallel with the sintering process, where the position of the phase transition shifts to lower temperatures with an increase in Sr content. This is consistent with the behavior of low-temperature phase transitions of BST. The phase transition was not observed in sintered samples, suggesting that there is a size-dependence of the phase transition temperature. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. OI 172057]http://www.doiserbia.nb.rs/img/doi/0350-820X/2018/0350-820X1801029K.pdfBarium strontium titanateSintering kineticsPhase transitionSize dependence.
spellingShingle Kosanović D.A.
Blagojević V.A.
Labus N.J.
Tadić N.B.
Pavlović V.B.
Ristić M.M.
Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
Science of Sintering
Barium strontium titanate
Sintering kinetics
Phase transition
Size dependence.
title Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
title_full Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
title_fullStr Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
title_full_unstemmed Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
title_short Effect of chemical composition on microstructural properties and sintering kinetics of (Ba,Sr)TiO3 powders
title_sort effect of chemical composition on microstructural properties and sintering kinetics of ba sr tio3 powders
topic Barium strontium titanate
Sintering kinetics
Phase transition
Size dependence.
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2018/0350-820X1801029K.pdf
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