INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES
Апстракт
Barium titanate (BT) as the ferroelectric material is a good candidate for variety of applications due to its excellent dielectric, ferroelectric and piezoelectric properties. In this work barium titanate powder was prepared by soft chemical process from polymeric precursors (modified Pechini process). The obtained BT powder was nanosized with primary particles ~ 74 nm, but factor of agglomeration (Fagg) pointed on presence of agglomerates ~ 6 μm. It is well known that agglomerates could influence on setback of materials structure and properties. In order to obtain the de-agglomeration of nanopowder and to improve BT properties, an attrition milling was performed. Barium titanate powder was treated in attrition mill with zirconia media for 1h in 2% polyacrylic acid. Milled powder (BTA) possessed particles ~ 50 nm and agglomerates size was reduced to ~ 690 nm. Specific surface area of milled powder was higher than in starting BT powder. To investigate the effect of milling on elec...trical properties of ceramics, both BT powders were uniaxially pressed and sintered at 1300 oC for 8 h in air. SEM micrographs showed polygonal grains with dimensions around 2 μm in both ceramics. On the other hand, density of ceramics obtained from milled powder was 95 % of theoretical value and 90 % for BT. Temperature dependence of relative permittivity showed three structural transitions characteristic for ferroelectric BT ceramics. The temperature transition from ferroelectric to paraelectric was found to be at 120 oC for BT and 122 oC for BTA. Dielectric constant value was around 6700 for BTA, which was much higher value in comparison with non-treated BT where permittivity was 1340. Dielectric losses were below 0.03 in both BT ceramics.
Кључне речи:
Barium titanate / dielectric / ferroelectric / piezoelectric / attrition millИзвор:
Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80, 2011Издавач:
- Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80
Институција/група
Institut za multidisciplinarna istraživanjaTY - CONF AU - Vijatović Petrović, Mirjana AU - Bobić, Jelena AU - Stojanović, Biljana AU - Greičius, Simonas AU - Bowen, Paul PY - 2011 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/3063 AB - Barium titanate (BT) as the ferroelectric material is a good candidate for variety of applications due to its excellent dielectric, ferroelectric and piezoelectric properties. In this work barium titanate powder was prepared by soft chemical process from polymeric precursors (modified Pechini process). The obtained BT powder was nanosized with primary particles ~ 74 nm, but factor of agglomeration (Fagg) pointed on presence of agglomerates ~ 6 μm. It is well known that agglomerates could influence on setback of materials structure and properties. In order to obtain the de-agglomeration of nanopowder and to improve BT properties, an attrition milling was performed. Barium titanate powder was treated in attrition mill with zirconia media for 1h in 2% polyacrylic acid. Milled powder (BTA) possessed particles ~ 50 nm and agglomerates size was reduced to ~ 690 nm. Specific surface area of milled powder was higher than in starting BT powder. To investigate the effect of milling on electrical properties of ceramics, both BT powders were uniaxially pressed and sintered at 1300 oC for 8 h in air. SEM micrographs showed polygonal grains with dimensions around 2 μm in both ceramics. On the other hand, density of ceramics obtained from milled powder was 95 % of theoretical value and 90 % for BT. Temperature dependence of relative permittivity showed three structural transitions characteristic for ferroelectric BT ceramics. The temperature transition from ferroelectric to paraelectric was found to be at 120 oC for BT and 122 oC for BTA. Dielectric constant value was around 6700 for BTA, which was much higher value in comparison with non-treated BT where permittivity was 1340. Dielectric losses were below 0.03 in both BT ceramics. PB - Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80 C3 - Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80 T1 - INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES UR - https://hdl.handle.net/21.15107/rcub_rimsi_3063 ER -
@conference{ author = "Vijatović Petrović, Mirjana and Bobić, Jelena and Stojanović, Biljana and Greičius, Simonas and Bowen, Paul", year = "2011", abstract = "Barium titanate (BT) as the ferroelectric material is a good candidate for variety of applications due to its excellent dielectric, ferroelectric and piezoelectric properties. In this work barium titanate powder was prepared by soft chemical process from polymeric precursors (modified Pechini process). The obtained BT powder was nanosized with primary particles ~ 74 nm, but factor of agglomeration (Fagg) pointed on presence of agglomerates ~ 6 μm. It is well known that agglomerates could influence on setback of materials structure and properties. In order to obtain the de-agglomeration of nanopowder and to improve BT properties, an attrition milling was performed. Barium titanate powder was treated in attrition mill with zirconia media for 1h in 2% polyacrylic acid. Milled powder (BTA) possessed particles ~ 50 nm and agglomerates size was reduced to ~ 690 nm. Specific surface area of milled powder was higher than in starting BT powder. To investigate the effect of milling on electrical properties of ceramics, both BT powders were uniaxially pressed and sintered at 1300 oC for 8 h in air. SEM micrographs showed polygonal grains with dimensions around 2 μm in both ceramics. On the other hand, density of ceramics obtained from milled powder was 95 % of theoretical value and 90 % for BT. Temperature dependence of relative permittivity showed three structural transitions characteristic for ferroelectric BT ceramics. The temperature transition from ferroelectric to paraelectric was found to be at 120 oC for BT and 122 oC for BTA. Dielectric constant value was around 6700 for BTA, which was much higher value in comparison with non-treated BT where permittivity was 1340. Dielectric losses were below 0.03 in both BT ceramics.", publisher = "Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80", journal = "Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80", title = "INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES", url = "https://hdl.handle.net/21.15107/rcub_rimsi_3063" }
Vijatović Petrović, M., Bobić, J., Stojanović, B., Greičius, S.,& Bowen, P.. (2011). INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES. in Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80 Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80.. https://hdl.handle.net/21.15107/rcub_rimsi_3063
Vijatović Petrović M, Bobić J, Stojanović B, Greičius S, Bowen P. INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES. in Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80. 2011;. https://hdl.handle.net/21.15107/rcub_rimsi_3063 .
Vijatović Petrović, Mirjana, Bobić, Jelena, Stojanović, Biljana, Greičius, Simonas, Bowen, Paul, "INFLUENCE OF ATTRITION MILLING ON BARIUM TITANATE PROPERTIES" in Thirteenth Annual Conference-YUCOMAT 2011, September 5-9, Herceg Novi, Montenegro, Programme and the book of abstracts, p 80 (2011), https://hdl.handle.net/21.15107/rcub_rimsi_3063 .