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Electromechanical anisotropy behavior in Pb_0.88Eu0.08Ti_(1-y) Mn_yO_3 system: Role of 90°domain reversal

机译:Pb_0.88Eu0.08Ti_(1-y)Mn_yO_3系统中的机电各向异性行为:90°畴反转的作用

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摘要

An indirect observation of 90°domain reversal under the influence of a poling field process was undertaken by an x-ray diffraction study in the Pb_0.88Eu_0.08Ti_(1-y). Mn_yO_3 (y = 0, 0.01, 0.02, and 0.03) piezoelectric anisotropic system. The optimum condition k_p → 0 was achieved for y = 0.02 composition. A large percentage of 90° domain rotation was necessary, but not a sufficient condition for the ultramgh electromechanical anisotropy manifestation. A large microstrain originated by structural defects in unpoled samples seemed to play a crucial role in the attainment of this piezoelectric anisotropy. A breaking in the translational periodicity due to induced vacancy in Pb and O sites by Eu~3+ and Mn~2+ substitutions was manifested in the nonuniform variance of the tetragonality (c/a), the large microstrain, and the detriment of crystallinity observed.
机译:通过在Pb_0.88Eu_0.08Ti_(1-y)中进行的X射线衍射研究,在极化场过程的影响下间接观察了90°域反转。 Mn_yO_3(y = 0、0.01、0.02和0.03)压电各向异性系统。对于y = 0.02组成,达到了最佳条件k_p→0。很大一部分90°畴旋转是必要的,但不是超机电各向异性表现的充分条件。由未极化样品中的结构缺陷引起的大的微应变似乎在实现这种压电各向异性中起着至关重要的作用。由Eu〜3 +和Mn〜2 +取代引起的Pb和O位空位引起的翻译周期性的破坏表现为四方性(c / a)的不均匀变化,大的微应变和结晶度的损害观测到的。

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