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Temperature dependence of piezoelectric properties of high- TC Bi (Mg1/2Ti1/2) O3 - PbTiO3

机译:高TC Bi(Mg1 / 2Ti1 / 2)O3-PbTiO3压电性能的温度依赖性

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摘要

The temperature dependence of both polarization and electric-field induced strain was investigated for (1-x)Bi(Mg1/2Ti1/2)O-3-xPbTiO(3) (x=0.36, 0.37, and 0.38), with the morphotropic phase boundary located at x=0.37. Remanent polarization (P-r) and maximum polarization (P-max) of all compositions are enhanced with increasing temperature up to 175 degrees C, which is rationalized as improved domain switching due to reduced tetragonality (c/a). The hysteresis during unipolar electric cycling tends to decrease with increase in the fraction of tetragonal phase. Temperature dependent x-ray diffraction demonstrates that switched non-180 degrees domains are stable against thermal depoling above 200 degrees C, which indicates that the currently investigated materials are suitable for high temperature applications. This promising high-T-C piezoelectric is further discussed with reference to oxygen octahedron of the tilted R3c and untilted R3m space groups and the tolerance factor (t).
机译:研究了(1-x)Bi(Mg1 / 2Ti1 / 2)O-3-xPbTiO(3)(x = 0.36、0.37和0.38)的极化和电场诱导应变的温度依赖性相位边界位于x = 0.37。随着温度升高至175摄氏度,所有组合物的剩余极化(P-r)和最大极化(P-max)都会增强,这归因于由于四方性(c / a)降低而导致的畴切换。单极性电循环过程中的磁滞趋向于随着四方相分数的增加而降低。随温度变化的X射线衍射表明,切换后的非180度域对200摄氏度以上的热极化稳定,这表明当前研究的材料适用于高温应用。参照倾斜的R3c和倾斜的R3m空间群的氧八面体以及公差系数(t)进一步讨论了这种有前途的高T-C压电材料。

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