Wang Can, Redfern Simon A T, Aguado Fernando, Daraktchiev Maren
Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK. Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
J Phys Condens Matter. 2009 Jul 22;21(29):295901. doi: 10.1088/0953-8984/21/29/295901. Epub 2009 Jun 29.
The ferroelastic phase transition and shape memory effect in La-modified lead zirconate titanate ferroelectric ceramics are demonstrated directly through the temperature-dependent macroscopic recoverable strain measured in a three-point bending configuration. X-ray diffraction measurements reveal that non- 180° domain switching occurs in the mechanically poled sample in two different ways at the bottom and top of the sample which have been under tensile and compressive stresses, respectively. The calculated fraction of non- 180° switched domains in the poled sample increases nonlinearly with the applied force and shows a saturation trend, which is consistent with the nonlinear behavior of the remnant strain. This study confirms that the mechanical stress applied upon cooling ferroelectric ceramics from the paraelectric to the ferroelectric phase can easily activate ferroelastic domain switching and give rise to preferred domain orientation and consequent macroscopic remnant strain which results in a history effect and shape memory effect via the ferroelastic phase transition.
通过在三点弯曲配置中测量的随温度变化的宏观可恢复应变,直接证明了镧改性锆钛酸铅铁电陶瓷中的铁弹相变和形状记忆效应。X射线衍射测量表明,在机械极化的样品中,分别处于拉伸和压缩应力下的样品底部和顶部以两种不同方式发生非180°畴切换。计算得到的极化样品中非180°切换畴的比例随施加力呈非线性增加并呈现饱和趋势,这与残余应变的非线性行为一致。本研究证实,在铁电陶瓷从顺电相冷却到铁电相时施加的机械应力能够轻易激活铁弹畴切换,并产生择优畴取向以及随之而来的宏观残余应变,这通过铁弹相变导致了历史效应和形状记忆效应。