X-Ray Study on Lattice Strain and Domain Switching Induced in Rhombohedral PZT by Poling and External Loading

K. Shirakihara, Keisuke Tanaka, Y. Akiniwa, Y. Sakaida, Hirokatsu Mukai
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引用次数: 4

Abstract

The X-ray diffraction method was applied to measure the change of the lattice strain and domain switching in rhombohedral lead zirconate titanate (PZT) due to poling and external straining. The lattice strain was determined from the linear relation between the diffraction angle 2θ and sin2ψ (ψ is the angle between the normals of the specimen surface and of the diffraction plane). The lattice strain measured by X-rays is at most 15% of the macrostrain determined from the dimensional change due to poling. Domain switching caused a major part of the macrostrain. External loading induced domain switching and the lattice strain. The lattice strain induced by external loading was at most 25% of the applied strain. The amount of domain switching was evaluated by the change of the intensity ratio, I222/I222, of the 222 to 222 diffraction. The intensity ratio for the normal diffraction (ψ=0°) was decreased with increasing the applied strain, because the spontaneous polarization direction, the 222 direction, turned to the loading direction. The broadening of X-ray diffraction profiles obtained from the diffraction plane perpendicular to the poling direction was the maximum, indicating the largest microstrain in the poling direction.
极化和外载荷诱导菱形PZT晶格应变和畴切换的x射线研究
采用x射线衍射法测量了菱面体锆钛酸铅(PZT)在极化和外应变作用下晶格应变和畴切换的变化。晶格应变由衍射角2θ与sin2ψ (ψ为试样表面法线与衍射面的夹角)之间的线性关系确定。x射线测得的晶格应变最多是由极化引起的尺寸变化所测定的大应变的15%。域转换是造成大应变的主要原因。外加载荷诱导域切换和晶格应变。外加载荷引起的晶格应变最多为外加应变的25%。通过对222 - 222衍射的强度比I222/I222的变化来评价畴切换量。法向衍射(ψ=0°)的强度比随着外加应变的增大而减小,这是由于自发极化方向222向加载方向转变所致。垂直于极化方向的衍射平面x射线衍射剖面展宽最大,表明极化方向的微应变最大。
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