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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Magnetoelectric dual-particulate composites with wasp-waisted magnetic response for broadband energy harvesting
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Magnetoelectric dual-particulate composites with wasp-waisted magnetic response for broadband energy harvesting

机译:磁电双颗粒复合材料,具有宽带能量收获的磁性磁响应

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摘要

Dual-particulate composites of cobalt ferrite dispersed in a fully dense PZT matrix are produced by quite-fast sintering of mechanically activated powders. By high-energy milling of the powders a bi-modal grain size distribution, with octahedral nano-grains and larger grains grown by multiple parallel twinning, are achieved in the final microstructure. The material display a "wasp-waisted" magnetic response as a consequence of the two main CoFe2O4 grain populations and can be exploited for broadband energy harvesting or field sensors. After poling under 5 kV/mm, a maximum d(33) of 30 pC/N was achieved. This value is an order of magnitude lower than that of bulk PZT. Nevertheless, a magnetoelectric coefficient of 1.74 mV cm(-1) Oe(-1) is obtained, which suggests the high potentiality of these materials, since this value is higher than that shown by magnetoelectric composites with similar composition and connectivity reported in literature. This is so for a partially poled material and thus, magnetoelectric coefficients should be significantly increased by improving the poling process. (C) 2018 The Authors. Published by Elsevier B.V.
机译:通过机械活化粉末的相当快速烧结,通过相当快地烧结分散在完全致密的PZT基质中的钴铁氧体的双颗粒复合材料。通过高能铣削粉末的双型粒度分布,在最终的微观结构中实现了多个平行孪晶的八面体纳米颗粒和较大的晶粒。材料显示出“WASP腰围”磁响应,作为两个主要COFE2O4谷物群,并且可以利用宽带能量收集或场传感器。在5 kV / mm下抛光后,实现了最大d(33)的30 pc / n。该值是低于散装PZT的数量级。然而,获得了1.74mVcm(-1)OE(-1)的磁电系数,这表明这些材料的高潜力,因为该值高于磁电复合材料具有相似组成和在文献中的连接的磁性复合材料所示。这对于部分极头材料是如此,因此,通过改善极化过程,应显着增加磁电系数。 (c)2018年作者。由elsevier b.v出版。

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