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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 >Characterization of the interface reaction zone between iron and NiZn ferrite in a composite material - Study of a silica layer as a diffusion barrier
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Characterization of the interface reaction zone between iron and NiZn ferrite in a composite material - Study of a silica layer as a diffusion barrier

机译:复合材料中铁和NiZn铁素体界面反应区的表征 - 二氧化硅层作为扩散屏障的研究

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Iron-ferrite composites fabricated by powder metallurgy processes were studied for electromagnetic and large band microwave absorption applications. The sintering behavior of such composites is not well-understood, and these materials have been found to lose their magnetic properties or mechanical properties. Different systems of Fe/NiZn ferrite composites were investigated in order to better understand the chemical reactions that occur between oxide spinel and iron particles during the fabrication process. Three different systems, two models and one reference material were studied to analyze the chemical reactions in the aforementioned fabrication process. The first model consisted of iron films deposited by Physical Vapor Deposition (PVD) onto an NiZn-ferrite substrate. The reference material was made of a mixture of hot pressed iron and ferrite powders. In the second model, a SiO2 layer was deposited by PVD onto the NiZn-ferrite substrate, followed by iron deposition by PVD to study the role of SiO2 as a diffusion barrier. The materials were characterized using scanning electron microscopy (SEM), transmission electron microscopy (TEM), dilatometry, electron probe microscopy analysis (EPMA) and Xray diffraction (XRD). For the Fe/NiZn ferrite systems, the experimental results showed (i) an oxido-reduction reaction above 600 degrees C that produced FeO and FexNi1-x phases and (ii) a diffusion process of Ni and Zn. The combination of diffusion and oxido-reduction reaction induced the total consumption of the initial phase and a considerable decrease in magnetic properties. By adding a silica layer between the iron and ferrite layers, the redox interfacial reaction and iron diffusion were prevented at temperatures up to 800 degrees C. (C) 2017 Published by Elsevier B.V.
机译:研究了粉末冶金工艺制造的铁 - 铁氧体复合材料,用于电磁和大带微波吸收应用。这种复合材料的烧结行为不受欢迎,已经发现这些材料失去了磁性或机械性能。研究了不同的Fe / Nizn铁氧体复合材料以更好地了解在制造过程中氧化物尖晶石和铁颗粒之间发生的化学反应。研究了三种不同的系统,两种模型和一个参考材料,分析上述制造过程中的化学反应。第一模型由物理气相沉积(PVD)沉积在NizN-铁素体底物上的铁膜组成。参考材料由热压铁和铁氧体粉末的混合物制成。在第二种模型中,通过PVD将SiO 2层沉积到NizN-铁素体底物上,然后通过PVD进行铁沉积,研究SiO2作为扩散屏障的作用。使用扫描电子显微镜(SEM),透射电子显微镜(TEM),稀释测定,电子探针显微镜分析(EPMA)和X射线衍射(XRD)来表征材料。对于Fe / Nizn铁氧体系统,实验结果表明(i)600℃以上的氧化还原反应产生Feo和FexNi1-x相和(ii)Ni和Zn的扩散过程。扩散和氧化还原反应的组合诱导初始相的总消耗和磁性大大降低。通过在铁和铁素体层之间添加二氧化硅层,在elestvier b.v发表的温度下,在高达800℃的温度下防止氧化还原界面反应和铁扩散。

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