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Revealing of Core Shell Effect on Frequency-Dependent Properties of Bi-based Relaxor/Ferroelectric Ceramic Composites

机译:揭示了核壳对双基弛豫/铁电陶瓷复合材料的频变特性的影响

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摘要

In this study, electromechanical characteristics of (1-x) Bi0.5Na0.5TiO3–xSrTiO3 (ST26, x = 0.26)/(1-y) Bi0.5Na0.5TiO3–ySrTiO3 (ST10, y = 0.1) (matrix/seed) composites were studied. The ST26 (high relaxor phase) and ST10 (a relaxor ferroelectric (RF), high ferroelectric phase) composite with large (r-ST26-ST10) and small (t-ST26-ST10) grains exhibited frequency-related dielectric properties and large strain response at a low triggering electric field (an incipient piezoelectricity). It is ascribed to a matrix-seed effect originating from the inhomogeneous composition due to the presence of two phases. The r-ST26-ST10 composite sintered at 4 h, prominent material, showed a high normalized dynamic strain (d33*) of ~700 pm/V (large grains) with stable frequency dependence properties at a low field of 40 kV/cm. The properties of the r-ST26-ST10 composite exhibit less decay with frequency-related polarization and strain compared to those of t-ST26-ST10 composite. The increase in soaking time promotes the diffusion and homogenization of the microstructure in composites, leading to changes in the core-shell structure in the solid solution. The polarization and strain of the ST26-ST10 composites with the frequency are linked to the stability of the internal random fields created by non-ergodic relaxor phase of seed and the amount of phase change in the ergodic relaxor matrix.
机译:在这项研究中,(1-x)Bi0.5Na0.5TiO3-xSrTiO3(ST26,x = 0.26)/(1-y)Bi0.5Na0.5TiO3-ySrTiO3(ST10,y = 0.1)(基质/种子)的机电特性)复合材料进行了研究。具有大(r-ST26-ST10)和小(t-ST26-ST10)晶粒的ST26(高弛豫相)和ST10(弛豫铁电(RF,高铁电相)复合材料)具有与频率相关的介电特性和大应变在低触发电场下的响应(初始压电)。这归因于由于两相的存在而由不均匀组成引起的基质种子效应。在4?h烧结的突出材料r-ST26-ST10复合材料表现出〜700 normalpm / V(大晶粒)的高归一化动态应变(d33 *),在40 kV / cm的低场下具有稳定的频率依赖性。与t-ST26-ST10复合材料相比,r-ST26-ST10复合材料的性能在与频率相关的极化和应变下表现出较小的衰减。浸泡时间的增加促进了复合材料中微观结构的扩散和均质化,从而导致固溶体中核-壳结构发生变化。 ST26-ST10复合材料的极化和应变随频率的变化与种子的非遍历弛豫相产生的内部随机场的稳定性以及遍历弛豫矩阵中的相变量有关。

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