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Extensive domain wall contribution to strain in a (K,Na)NbO3-based lead-free piezoceramics quantified from high energy X-ray diffraction

机译:广泛的畴壁对(K,Na)NbO3基无铅压电陶瓷中的应变的贡献从高能X射线衍射定量

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摘要

The origins of high piezoelectric properties in the lead-free (K,Na)NbO3-based tetragonal composition (K0.44Na0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3 (KNL-NTS) is investigated by quantifying the intrinsic and extrinsic contributions from high energy X-ray diffraction measurements. The applied methodology, which allows discerning between the intrinsic contribution, related to the field induced lattice distortion, and the extrinsic contributions, related to non-180° domain wall motion, is widely described in this work. The non-180° domain reorientation of the KNL-NTS piezoceramic is quantify from the integrated intensities of the 002 and 200 reflections obtained from line profile, while the shifts in peak position versus the applied electric field is used to obtain the lattice strain contribution. Large non-180° domain wall contribution to the electric field induced macroscopic strain (80% of the macroscopic strain) is verified in KNL-NTS.
机译:通过对无铅(K,Na)NbO3基四方组合物(K0.44Na0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3(KNL-NTS)中高压电性能的起源进行研究高能X射线衍射测量的内在和外在贡献。在这项工作中广泛描述了所应用的方法,该方法可以区分与场致晶格畸变有关的内在影响与与非180°畴壁运动有关的外在影响。通过从线轮廓获得的002和200反射的积分强度来量化KNL-NTS压电陶瓷的非180°域取向,同时使用峰位置相对于施加电场的位移来获得晶格应变贡献。在KNL-NTS中验证了非180°畴壁对电场感应的宏观应变的贡献(占宏观应变的80%)。

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