Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics
© 2018 Taylor & Francis Group, LLC. In this work, electric field-induced strain behavior and ferroelectric properties of xBCZT/PZT (with x = 0, 4 and 8 mol%) ceramics have been investigated. The E c and P r increased with increasing electric field and exhibited pinched-shape hysteresis loop at...
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th-cmuir.6653943832-485362018-04-25T10:13:44Z Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics P. Butnoi S. Manotham P. Jaita D. Sweatman N. Pisitpipathsin T. Tunkasiri © 2018 Taylor & Francis Group, LLC. In this work, electric field-induced strain behavior and ferroelectric properties of xBCZT/PZT (with x = 0, 4 and 8 mol%) ceramics have been investigated. The E c and P r increased with increasing electric field and exhibited pinched-shape hysteresis loop at 60 kV/cm. The abnormal domain walls and switching behavior of the domains were used to discuss the above results. The strain value increased with increasing BCZT content and reached the maximum value of 0.27% (d * 33 = 450 pm/V) for the 4 mol% BCZT sample. This offered an opportunity to obtain a good candidate for using in piezoelectric applications. 2018-04-25T10:13:44Z 2018-04-25T10:13:44Z 2018-02-12 Journal 16078489 10584587 2-s2.0-85044987304 10.1080/10584587.2018.1444894 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85044987304&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48536 |
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© 2018 Taylor & Francis Group, LLC. In this work, electric field-induced strain behavior and ferroelectric properties of xBCZT/PZT (with x = 0, 4 and 8 mol%) ceramics have been investigated. The E c and P r increased with increasing electric field and exhibited pinched-shape hysteresis loop at 60 kV/cm. The abnormal domain walls and switching behavior of the domains were used to discuss the above results. The strain value increased with increasing BCZT content and reached the maximum value of 0.27% (d * 33 = 450 pm/V) for the 4 mol% BCZT sample. This offered an opportunity to obtain a good candidate for using in piezoelectric applications. |
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P. Butnoi S. Manotham P. Jaita D. Sweatman N. Pisitpipathsin T. Tunkasiri |
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P. Butnoi S. Manotham P. Jaita D. Sweatman N. Pisitpipathsin T. Tunkasiri Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
author_facet |
P. Butnoi S. Manotham P. Jaita D. Sweatman N. Pisitpipathsin T. Tunkasiri |
author_sort |
P. Butnoi |
title |
Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
title_short |
Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
title_full |
Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
title_fullStr |
Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
title_full_unstemmed |
Electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
title_sort |
electric field–induced strain behavior and ferroelectric properties of lead zirconate titanate-barium calcium zirconate titanate ceramics |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85044987304&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48536 |
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