首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Phase Transition Temperatures and Piezoelectric Properties of (Bi1/2Na1/2)TiO3-and (Bi1/2K1/2)TiO3-Based Bismuth Perovskite Lead-Free Ferroelectric Ceramics
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Phase Transition Temperatures and Piezoelectric Properties of (Bi1/2Na1/2)TiO3-and (Bi1/2K1/2)TiO3-Based Bismuth Perovskite Lead-Free Ferroelectric Ceramics

机译:(Bi1 / 2Na1 / 2)TiO3和(Bi1 / 2K1 / 2)TiO3基钙钛矿铋无铅铁电陶瓷的相变温度和压电性能

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The phase transition temperatures and the dielectric, ferroelectric, and piezoelectric properties of bismuth perovskite lead-free ferroelectric ceramics such as (Bi1/2Na1/2)TiO3 (BNT)- and (Bi1/2Na1/2)TiO3 (BKT)-based solid solutions have been reviewed. According to the results obtained by our group, these ceramics can be considered as superior lead-free piezoelectric materials for reducing environmental damage. Perovskite-type ceramics appear to be suitable for actuator and high-power applications that require a large piezoelectric constant d33 and a high Curie temperature TC or a high depolarization temperature Td (> 200degC). In this paper, we summarize the relationship between phase transition temperatures and piezoelectric properties. In the case of the BNT-based solid solutions, the highest piezoelectric properties were obtained at the morphotropic phase boundary (MPB) between rhombohedral and tetragonal phases. However, d33 and Td were shown to have a tradeoff relationship. Considering the high Td and high d33, the tetragonal side of the MPB composition is suitable for piezoelectric actuator application. Meanwhile, the Qm values on the rhombohedral side of the MPB composition were better than those on the tetragonal side, and excellent high-power characteristics were obtained for Mn-doped BNT-(Bi1/2Na1/2)TiO3-BKT ternary systems with rhombohedral symmetry. BKT ceramics were prepared by the hot-pressing (HP) method, and their ferroelectric and piezoelectric properties were clarified. BKT ceramics doped with a small amount of Bi have a relatively high remanent polarization of Pr = 27.6 muC/cm2 and high piezoelectric properties (k33 = 0.40 and d33 = 101 pC/N). In addition, it was clarified that BKT ceramics have a high Td of approximately 300degC. The solid solution (1-x)BKT-xBaTiO3 (BKT-BT100x) exhibited a high Td of approximately 300degC at x > 0.4.
机译:(Bi1 / 2Na1 / 2)TiO3(BNT)-和(Bi1 / 2Na1 / 2)TiO3(BKT)-based固体等钙钛矿酸铋无铅铁电陶瓷的相变温度以及介电,铁电和压电特性解决方案已经过审查。根据我们小组获得的结果,这些陶瓷可以被视为降低环境损害的优质无铅压电材料。钙钛矿型陶瓷似乎适合于致动器和大功率应用,这些应用需要大的压电常数d33和高的居里温度TC或高的去极化温度Td(> 200degC)。在本文中,我们总结了相变温度与压电性能之间的关系。在基于BNT的固溶体的情况下,在菱形和四方相之间的形态相界(MPB)处获得了最高的压电性能。但是,d33和Td具有折衷关系。考虑到高Td和高d33,MPB组合物的四边形面适合压电致动器应用。同时,MPB组合物的菱面体一侧的Qm值优于四边形的Qm值,并且具有菱面体的Mn掺杂的BNT-(Bi1 / 2Na1 / 2)TiO3-BKT三元体系获得了出色的高功率特性。对称。通过热压(HP)法制备了BKT陶瓷,并明确了它们的铁电和压电性能。掺有少量Bi的BKT陶瓷具有较高的剩余极化强度Pr = 27.6μC/ cm 2 和高压电性能(k33 = 0.40和d33 = 101 pC / N)。另外,已经澄清了BKT陶瓷具有约300℃的高Td。固溶体(1-x)BKT-xBaTiO3(BKT-BT100x)在x> 0.4时显示出约300℃的高Td。

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