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Extrinsic Contribution and Instability Properties in Lead-Based and Lead-Free Piezoceramics

机译:铅基和无铅压电陶瓷的外在贡献和不稳定性

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摘要

Piezoceramic materials generally exhibit a notable instability of their functional properties when they work under real external conditions. This undesirable effect, known as nonlinear behavior, is mostly associated with the extrinsic contribution to material response. In this article, the role of the ferroelectric domain walls’ motion in the nonlinear response in the most workable lead-based and lead-free piezoceramics is reviewed. Initially, the extrinsic origin of the nonlinear response is discussed in terms of the temperature dependence of material response. The influence of the crystallographic phase and of the phase boundaries on the material response are then reviewed. Subsequently, the impact of the defects created by doping in order to control the extrinsic contribution is discussed as a way of tuning material properties. Finally, some aspects related to the grain-size effect on the nonlinear response of piezoceramics are surveyed.
机译:压电陶瓷材料在实际外部条件下工作时,通常会表现出明显的功能特性不稳定性。这种不良影响(称为非线性行为)主要与材料响应的外部影响有关。在本文中,回顾了铁电畴壁运动在最可行的基于铅和无铅的压电陶瓷中的非线性响应中的作用。最初,根据材料响应的温度依赖性来讨论非线性响应的外部原因。然后回顾了结晶相和相界对材料响应的影响。随后,讨论了通过掺杂产生的缺陷的影响,以控制外在影响,以此作为调整材料性能的一种方式。最后,考察了晶粒尺寸对压电陶瓷非线性响应的影响。

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