首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Impedance engineered microwave absorption properties of Fe-Ni/C core-shell enabled rubber composites for X-band stealth applications
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Impedance engineered microwave absorption properties of Fe-Ni/C core-shell enabled rubber composites for X-band stealth applications

机译:用于X波段隐藏应用的Fe-Ni / C芯壳的阻抗工程微波吸收性能使橡胶复合材料具有橡胶复合材料

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We report a simple, consistent, and economical wet-chemical method for synthesizing a series of Fe-Ni nanocomposites by varying Fe and Ni fractions. Further, graphite wrapped Fe-Ni alloy nanoparticles in core-shell geometries are prepared by calcination of nanocomposites at 900 degrees C under N-2 gas. XRD studies reveal body-centered and face-centered (bcc/fcc) cubic Fe-Ni alloy core particles and hexagonal graphitic shell formation. More interestingly, a structural transition from bcc to fcc phase is also investigated with varying Ni concentration. The microstructural studies demonstrate similar to 10 nm graphitic shells together with a nearly spherical similar to 40 nm diameter Fe-Ni metallic core. These magnetic alloys showed the variation in magnetization and coercive fields with alloy compositions. The Fe-Ni core-shell material with the maximum magnetization is used for fabricating rubber-based composites by varying filler loading in the range 60-80 wt%. The utility of Fe-Ni/C alloy and rubber composite is categorized in terms of electromagnetic impedance matching for the entire X-band (8.2-12.4 GHz) frequency range based on the filler concentration and absorber thickness for microwave absorption applications. These core-shell alloy systems may show potential for stealth of strategic targets because of their very low density (similar to 1.1 g/cc) and lesser thickness than conventional absorbers. (C) 2021 Published by Elsevier B.V.
机译:我们报道了一种简单、一致、经济的湿化学方法,通过改变铁和镍的组分来合成一系列铁镍纳米复合材料。此外,通过在900摄氏度下在N-2气体下煅烧纳米复合材料,制备了具有核壳几何形状的石墨包裹的Fe-Ni合金纳米颗粒。XRD研究揭示了体心和面心(bcc/fcc)立方Fe-Ni合金核颗粒和六方石墨壳的形成。更有趣的是,还研究了不同镍浓度下从bcc到fcc相的结构转变。微观结构研究表明,类似于10nm的石墨壳,以及近似球形的类似于40nm直径的Fe-Ni金属芯。这些磁性合金显示了磁化强度和矫顽场随合金成分的变化。具有最大磁化强度的Fe-Ni核壳材料用于通过在60-80 wt%范围内改变填料负载来制备橡胶基复合材料。Fe-Ni/C合金和橡胶复合材料的用途根据微波吸收应用中填料浓度和吸收体厚度,在整个X波段(8.2-12.4 GHz)频率范围内的电磁阻抗匹配进行分类。这些核壳合金系统的密度非常低(类似于1.1克/立方厘米),厚度小于传统吸收体,因此可能显示出战略目标隐身的潜力。(c)2021由爱思唯尔B.V出版。

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