首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrical properties, strain stability and electrostrictive behavior in 0.5BaZr(0.2)Ti(0.8)O(3)-(0.5-x)Ba0.7Ca0.3TiO3-xBa(0.7)Sr(0.3)TiO(3) lead-free ceramics
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Electrical properties, strain stability and electrostrictive behavior in 0.5BaZr(0.2)Ti(0.8)O(3)-(0.5-x)Ba0.7Ca0.3TiO3-xBa(0.7)Sr(0.3)TiO(3) lead-free ceramics

机译:0.5bazr(0.2)Ti(0.8)O(3) - (0.5-x)Ba0.7ca0.3tio3-xba(0.7)Sr(0.3)TiO(3)无铅陶瓷(0.2)Ti(0.2)Ti(0.2)Ti(0.2)Ti(0.2) - (0.8)o(0.2) - (0.5×) - (0.3) - (0.3)TiO(3)无铅陶瓷

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摘要

To obtain outstanding electrical properties of Barium titanate based ceramics to meet the requirements of the practical applications, a new system of BaZr0.2Ti0.8O3-(0.5-x)Ba0.7Ca0.3TiO3-xBa(0.7)Sr(0.3)TiO(3) (BZTBCT-xBST, 0 <= x <= 0.5) lead-free material was designed. A systematic study about piezoelectric, ferroelectric, and strain properties was carried out in the ceramics. The BZT-BCT-xBST ceramics with x = 0.3 exhibit an enhanced electrical property (e.g., d(33)similar to 540 pC/N, k(p)similar to 0.42, epsilon(r) similar to 4560, tan delta similar to 0.023, and strain0.132% @30 kV/cm) as well as a good electrostrictive behavior (Q(33) similar to 0.0366m(4)C(-2), Strain0.08%), and Q33 value is compared to PZT-baesd materials. In addition, the influence of external fields (temperature, electric field) on strain stability reveals that the strain under high driving electric fields has comparatively good temperature stability. We firmly believe that such a work can be beneficial to the practical process of BT-based ceramics. (C) 2019 Elsevier B.V. All rights reserved.
机译:为了获得基于钛酸钡的陶瓷的卓越电性能,以满足实际应用的要求,BAZR0.2TI0.8O3-(0.5-X)BA0.7CA0.3TiO3-XBA(0.7)SR(0.3)TIO(0.3) 3)(BZTBCT-XBST,设计了无铅材料的0 <= x <= 0.5)。在陶瓷中进行了关于压电,铁电和菌株性能的系统研究。具有X = 0.3的BZT-BCT-XBST陶瓷具有增强的电性能(例如,类似于540pc / n,k(p)的增强电性能(例如,与0.42,epsilon(r)类似于4560,Tan delta类似于0.023和菌株0.132%@ 30 kV / cm)以及良好的电致伸缩行为(Q(33),类似于0.0366m(4)c(-2),qualt0.08%)和Q33值进行比较PZT-BAESD材料。此外,外部场(温度,电场)对应变稳定性的影响表明,高驱动电场下的应变具有相对良好的温度稳定性。我们坚信,这样的工作可能有利于BT型陶瓷的实际过程。 (c)2019 Elsevier B.v.保留所有权利。

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