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Domain switching energies: Mechanical versus electrical loading in La-doped bismuth ferrite-lead titanate

机译:域开关能量:掺镧铁酸铋铋钛酸盐中的机械负载与电负载

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摘要

The mechanical stress-induced domain switching and energy dissipation in morphotropic phase boundary (1 - x)(Bi(1-y)La(y))FeO(3)-xPbTiO(3) during uniaxial compressive loading have been investigated at three different temperatures. The strain obtained was found to decrease with increasing lanthanum content, although a sharp increase in strain was observed for compositions doped with 7.5 and 10 at. % La. Increased domain switching was found in compositions with decreased tetragonality. This is discussed in terms of the competing influences of the amount of domain switching and the spontaneous strain on the macroscopic behavior under external fields. Comparison of the mechanically and electrically dissipated energy showed significant differences, discussed in terms of the different microscopic interactions of electric field and stress.
机译:在三个不同的方向上研究了单轴压缩载荷作用下相变相界(1-x)(Bi(1-y)La(y))FeO(3)-xPbTiO(3)中的机械应力引起的畴切换和能量耗散温度。发现获得的应变随着镧含量的增加而降低,尽管对于掺杂有7.5和10at。%的组合物观察到应变急剧增加。 %La。在四方性降低的组合物中发现增加的域切换。讨论了域切换量和自发应变对外部场下宏观行为的竞争影响。机械耗能和电耗能的比较显示出显着差异,并根据电场和应力的不同微观相互作用进行了讨论。

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