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Electrostrictive effect in ferroelectrics: An alternative approach to improve piezoelectricity

机译:铁电中的电致伸缩效应:提高压电性的另一种方法

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摘要

Electrostriction plays an important role in the electromechanical behavior of ferroelectrics and describes a phenomenon in dielectrics where the strain varies proportional to the square of the electric field/polarization. Perovskite ferroelectrics demonstrating high piezoelectric performance, including BaTiO3, Pb(Zr1-xTix)O3, and relaxor-PbTiO3 materials, have been widely used in various electromechanical devices. To improve the piezoelectric activity of these materials, efforts have been focused on the ferroelectric phase transition regions, including shift the composition to the morphotropic phase boundary or shift polymorphic phase transition to room temperature. However, there is not much room left to further enhance the piezoelectric response in perovskite solid solutions using this approach. With the purpose of exploring alternative approaches, the electrostrictive effect is systematically surveyed in this paper. Initially, the techniques for measuring the electrostrictive effect are given and compared. Second, the origin of electrostriction is discussed. Then, the relationship between the electrostriction and the microstructure and macroscopic properties is surveyed. The electrostrictive properties of ferroelectric materials are investigated with respect to temperature, composition, phase, and orientation. The relationship between electrostriction and piezoelectric activity is discussed in detail for perovskite ferroelectrics to achieve new possibilities for piezoelectric enhancement. Finally, future perspectives for electrostriction studies are proposed. 2014 AIP Publishing LLC.
机译:电致伸缩在铁电体的机电行为中起着重要作用,并描述了电介质中的一种现象,其中应变的变化与电场/极化的平方成正比。表现出高压电性能的钙钛矿铁电材料,包括BaTiO3,Pb(Zr1-xTix)O3和张弛性PbTiO3材料,已广泛用于各种机电设备中。为了改善这些材料的压电活性,已经集中精力在铁电相变区域上,包括将组成移至同相相界或将多晶相移至室温。但是,使用这种方法在钙钛矿固溶体中没有更多的空间可以进一步增强压电响应。为了探索替代方法,本文对电致伸缩效应进行了系统的研究。首先,给出并比较了测量电致伸缩效应的技术。其次,讨论电致伸缩的起源。然后,研究了电致伸缩与微观结构和宏观性质之间的关系。研究了铁电材料的电致伸缩性能,涉及温度,组成,相和方向。对于钙钛矿铁电体,详细讨论了电致伸缩与压电活性之间的关系,以实现压电增强的新可能性。最后,提出了电致伸缩研究的未来展望。 2014 AIP Publishing LLC。

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