首页> 外文期刊>Journal of the Ceramic Society of Japan >In-situ electric field induced lattice strain response observation in BiFeO3–BaTiO3 lead-free piezoelectric ceramics
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In-situ electric field induced lattice strain response observation in BiFeO3–BaTiO3 lead-free piezoelectric ceramics

机译:BiFeO3-BaTiO3无铅压电陶瓷中原位电场引起的晶格应变响应观察

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The electric field-dependent crystal structures and electrical properties were investigated in the 0.67BiFeO3–0.33BaTiO3 (BF33BT) lead-free piezoelectric ceramics. The room temperature synchrotron radiation X-ray diffraction (SR-XRD) patterns measured, without the application of an electric field, revealed all the peaks to be single suggesting the cubic like crystal structure of the BF33BT system. The domain switching was ascertained in the P – E hysteresis loop and S – E curve meanwhile, SR-XRD patterns exhibited beyond doubt single peak. In order to study the electric field induced structural phase transition, SR-XRD was measured in BF33BT ceramics as a function of electric field. The electric field applied up to 40 kV/cm with bipolar cycling was parallel along the longitudinal lattice response direction that was similar for the piezoelectric response measuring method. The shift of SR-XRD peaks to lower and/or higher angle in comparison to the peak position of zero field-SR-XRD was found to depend on the direction and intensity of the applied electric field. The peak shape under maximum electric field was quite same that of SR-XRD patterns at zero electric field. Importantly, the single peak shape was maintained for all the SR-XRD measured under the electric field. Therefore, the electric field induced structural phase transition did not occur in the BF33BT ceramics.
机译:研究了0.67BiFeO 3 –0.33BaTiO 3 (BF33BT)无铅压电陶瓷的电场依赖性晶体结构和电性能。在不施加电场的情况下测量的室温同步辐射X射线衍射(SR-XRD)模式显示所有峰均为单个,表明BF33BT系统呈立方晶体结构。在P – E磁滞回线和S – E曲线中确定了域切换,与此同时,SR-XRD图谱无疑显示出单峰。为了研究电场引起的结构相变,在BF33BT陶瓷中测量了SR-XRD作为电场的函数。通过双极循环施加的最高40 kV / cm的电场沿纵向晶格响应方向平行,这与压电响应测量方法相似。与零场的峰值位置相比,SR-XRD峰向较低和/或较高角度的移动被发现取决于SR-XRD的方向和强度。最大电场下的峰形与零电场下的SR-XRD图谱完全相同。重要的是,在电场下测量的所有SR-XRD均保持单个峰形。因此,BF33BT陶瓷中不会发生电场诱导的结构相变。

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