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首页> 外文期刊>Bulletin of materials science >Synthesis, structural and dielectric properties of 0.8PMN–0.2PT relaxor ferroelectric ceramic
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Synthesis, structural and dielectric properties of 0.8PMN–0.2PT relaxor ferroelectric ceramic

机译:0.8PMN–0.2PT弛豫铁电陶瓷的合成,结构和介电性能

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A 0.8PMN–0.2PT solid-solution ceramic was synthesized by columbite processing technique. The effects ofsintering temperature on the density, structure and microstructure and in turn on the dielectric properties were investigated.The ceramics sintered at and above 1050$^{circ}$C resulted in single-phase perovskite formation. However, high density $$90% is achieved only after 1170$^{circ}$C. Microstructural analysis revealed that grain size increases with increase in sintering temperature. Asignificant increase in the peak of dielectric permittivity only after 1150$^{circ}$C owing to increase in density is noted in this study. The quadratic law applied to this ceramic demonstrates that the transition is diffused. The broadness in phase transition and lower dielectric relaxation obtained for the composition demonstrate that the ceramic exhibits characteristics of both relaxor and normal ferroelectrics. The ceramic of composition 0.8PMN–0.2PT exhibits excellent dielectric properties $epsilon_{m r-max} = 20294$?27338 at 100 Hz with $T_c = 100$–96$^{circ}$C at low sintering temperature 1170–1180?C, respectively.
机译:通过钴矿加工技术合成了0.8PMN–0.2PT固溶陶瓷。研究了烧结温度对密度,结构和微观结构以及介电性能的影响。在1050℃以上烧结的陶瓷形成了单相钙钛矿。但是,只有在1170 $ ^ { circ} $ C之后才能实现高密度$> $ 90%。显微组织分析表明,晶粒尺寸随烧结温度的升高而增加。在这项研究中,由于密度的增加,仅在1150 $ ^ C之后,介电常数的峰值才显着增加。应用于该陶瓷的二次定律表明过渡扩散。该组合物获得的相变宽和较低的介电弛豫表明该陶瓷同时具有弛豫铁电体和普通铁电体的特性。成分为0.8PMN–0.2PT的陶瓷在低烧结度下表现出优异的介电性能$ epsilon _ { rm r-max} = 20294 $?27338在100 Hz下,$ T_c = 100 $ –96 $ ^ { circ} $ C温度分别为1170–1180?C。

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