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Influence of silicon and cobalt substitutions on magnetostriction coefficient of cobalt ferrite

机译:硅和钴取代对钴铁氧体磁致伸缩系数的影响

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摘要

Co1 + x Si x Fe2 ? 2x O4 ferrite system has been studied to estimate the influence of Si and Co substitutions together on the magnetic and magnetostrictive properties. The samples were prepared by standard double sintering ceramic technique. X-ray diffraction patterns of the study confirm spinel crystal structures. Hysteresis and magnetostriction measurements were made on all the samples at room temperature. M?ssbauer spectra were also made both at 300 K and at 4 K under the applied field of 5 T in the direction of gamma ray. Nominal decreases in Curie temperature and saturation magnetization were observed. The strain derivative, which relates to stress sensitivity, is observed to increase from 1.13 × 10 ? 9 to 2.51 × 10 ? 9 ? ? 1 m for x = 0.2 silicon concentration. The variations are explained on the basis of the strength of the exchange interactions between cations, and anisotropy modifications induced by migration of cobalt ions. The results demonstrate the possibility of controlling the magnetic and magnetomechanical properties through Co and Si substitutions.
机译:Co1 + x Si x Fe2?研究了2x O4 铁氧体系统,以估计Si和Co一起替代对磁和磁致伸缩性能的影响。通过标准双烧结陶瓷技术制备样品。该研究的X射线衍射图证实了尖晶石晶体结构。在室温下对所有样品进行磁滞和磁致伸缩测量。还在伽马射线方向上在5 T的施加场下在300 K和4 K处都制作了Mssbauer光谱。观察到居里温度和饱和磁化强度的名义下降。观察到与应力敏感性有关的应变导数从1.13×10?增加。 9 到2.51×10? 9 ? ? x等于0.2的硅浓度为1 m。根据阳离子之间的交换相互作用的强度以及由钴离子迁移引起的各向异性改性来解释这种变化。结果表明通过Co和Si替代控制磁和磁机械性能的可能性。

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