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Uniaxial compressive stress dependence of the high-field dielectric and piezoelectric performance of soft PZT piezoceramics

机译:软PZT压电陶瓷的高场介电和压电性能的单轴压应力依赖性

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摘要

The influence of uniaxial prestress on dielectric and piezoelectric performance was studied for soft lead zirconate titanate piezoceramics. High electric field induced polarization and longitudinal/transverse strain were measured at different compression preload levels of up to -400 MPa. The parameters evaluated included polarization/strain outputs, dielectric permittivity, piezoelectric constants, and dissipation energy as a function of the mechanical preload and electric-field strength. The results indicate a significant enhancement of the dielectric and piezoelectric performance within a certain prestress loading range. At much higher stress levels, the predominant mechanical depolarization effect makes the material exhibit hardly any piezoeffect. However, the enhanced performance achieved by a small stress preload is accompanied by an unfavorable increased hysteresis, and consequently, increased energy loss, which is attributed to a larger extrinsic contribution due to more non-1800 domain switching induced by the combined electromechanical load.
机译:研究了软轴锆钛酸钛压电陶瓷的单轴预应力对介电和压电性能的影响。在高达-400 MPa的不同压缩预载水平下测量了高电场感应的极化和纵向/横向应变。评估的参数包括极化/应变输出,介电常数,压电常数和耗散能量,它们是机械预紧力和电场强度的函数。结果表明,在一定的预应力载荷范围内,介电和压电性能显着提高。在高得多的应力水平下,主要的机械去极化作用使该材料几乎没有表现出任何压电效应。但是,通过较小的应力预加载获得的增强性能会伴随不利的磁滞增加,因此,能量损失也会增加,这归因于由于组合机电负载引起的更多非1800域切换而产生的更大的外部影响。

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