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首页> 外文期刊>Journal of Advanced Ceramics >Mechanical properties of Ni0.83Co0.15Cu0.02Fe1.9O4?δ+PbZr0.52Ti0.48O3 particulate composites by composite oscillator technique and the correlation with the results of magnetoelectric properties
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Mechanical properties of Ni0.83Co0.15Cu0.02Fe1.9O4?δ+PbZr0.52Ti0.48O3 particulate composites by composite oscillator technique and the correlation with the results of magnetoelectric properties

机译:复合振子法制备Ni0.83Co0.15Cu0.02Fe1.9O4δδ+ PbZr0.52Ti0.48O3颗粒复合材料的力学性能及其与磁电性能的关系

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摘要

The xNi0.83Co0.15Cu0.02Fe1.9O4?δ (NCCF) + (1?x)PbZr0.52Ti0.48O3 (PZT) particulate magneto ferroelectric composites with x = 0, 0.1, 0.2, 0.3, 0.4, 0.5 and 0.6 mole fraction were prepared by conventional ceramic double sintering method. The presence of two phases (perovskite structure of ferroelectric phase and spinal structure of ferromagnetic phase) was confirmed by X-ray diffraction. The magnetoelectric (ME) property of the particulate composites was determined at room temperature as a function of intensity of magnetic field. The temperature variation of the longitudinal modulus (L) and the internal friction (Q?1) of these particulate composites at 104.3 kHz was studied in the wide temperature range 30–420 °C. The temperature variation of the longitudinal modulus in each composition of these particulate composites showed two abrupt minima. One minimum coincided with the ferroelectric — paraelectric Curie transition temperature (θE) and the other with the ferromagnetic-paramagnetic Curie transition temperature (θM). The internal friction measurement also showed two sharp peaks in each composition corresponding to those temperatures where the minima were noticed in the temperature variation of the longitudinal modulus behaviour.
机译:xNi0.83Co0.15Cu0.02Fe1.9O4δδ(NCCF)+(1xx)PbZr0.52Ti0.48O3(PZT)颗粒磁铁电复合材料,其x = 0、0.1、0.2、0.3、0.4、0.5和0.6摩尔通过常规陶瓷双重烧结法制备级分。通过X射线衍射确认了两个相(铁电相的钙钛矿结构和铁磁相的脊结构)的存在。颗粒复合材料的磁电(ME)性能在室温下确定为磁场强度的函数。在30–420°C的宽温度范围内,研究了这些颗粒复合材料在104.3 kHz时的纵向模量(L)和内部摩擦(Q?1)的温度变化。这些颗粒复合材料的每种组合物中的纵向模量的温度变化显示出两个突然的最小值。一个最小值与铁电-顺电居里转变温度(θE)一致,另一个与铁磁-顺磁居里转变温度(θM)一致。内摩擦测量还显示出每种组成中的两个尖峰,对应于在纵向模量特性的温度变化中注意到最小值的那些温度。

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