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Electromechanical properties of lead zirconate titanate piezoceramics under the influence of mechanical stresses

机译:机械应力影响下钛酸锆钛酸铅压电陶瓷的机电性能

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摘要

In lead zirconate titanate piezoceramics, external stresses can cause substantial changes in the piezoelectric coefficients, dielectric constant, and elastic compliance due to nonlinear effects and stress depoling effects. In both soft and hard PZT piezoceramics, the aging can produce a memory effect that will facilitate the recovery of the poled state in the ceramics from momentary electric or stress depoling. In hard PZT ceramics, the local defect fields built up during the aging process can stabilize the ceramic against external stress depoling that results in a marked increase in the piezoelectric coefficient and electromechanical coupling factor in the ceramic under the stress. Although soft PZT ceramics can be easily stress depoled (losing piezoelectricity), a DC bias electric field, parallel to the original poling direction, can be employed to maintain the ceramic poling state so that the ceramic can be used at high stresses without depoling.
机译:在锆酸钛酸铅压电陶瓷中,由于非线性效应和应力去极化效应,外部应力会引起压电系数,介电常数和弹性柔度的显着变化。在软质和硬质PZT压电陶瓷中,时效都会产生记忆效应,这将有利于陶瓷从瞬时电或应力去极化过程中恢复极化态。在硬质PZT陶瓷中,在时效过程中建立的局部缺陷场可以使陶瓷免受外部应力干扰,从而在应力作用下导致陶瓷中压电系数和机电耦合系数的显着增加。尽管可以轻松地对软PZT陶瓷进行应力去极化(失去压电性),但可以采用平行于原始极化方向的DC偏置电场来维持陶瓷极化状态,从而可以在高应力下使用陶瓷而不会极化。

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