六铁体基微波吸收柔性高分子纳米复合材料

A. Ansari
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摘要

柔性微波吸收材料是在局域网、无线数据通信、雷达系统、卫星通信、卫星电视、电子设备和供热系统等领域具有广泛应用前景的新一代材料。在各种应用中,许多介电、磁性和磁介电材料经常用作微波吸收剂。碳纤维、碳纳米管、石墨、石墨烯等碳质材料和金属、金属氧化物、导电合金等无机材料由于其导电损耗特性而被用于开发介电微波吸收材料。磁性金属及其化合物等磁性材料由于其磁滞损耗特性而被用于制造磁性微波吸收体。电介质和磁性材料的组合特性共同有助于磁介质微波吸收剂的制备。尖晶石铁氧体通常作为磁性元件用于吸波材料的设计。然而,尖晶石铁氧体基微波吸收器通常在低于1ghz的频率下工作。对于工作在1ghz以上频率(例如x波段)的微波吸收器的设计,需要大量的尖晶石铁氧体(~70 ~ 90wt %)。然而,如此高的尖晶石铁素体含量使得吸收体重量过重,限制了其在航空航天工业中的应用。尖晶石铁氧体基微波吸收材料除了重量大外,其厚度大、吸收带宽窄、脆性等缺点也限制了其在实际应用中的应用。为了提高铁氧体基微波吸收体的适用性,六方铁氧体(m型)由于其相对较高的磁损耗而成为更高频率(x波段)应用的宽带和高效微波吸收体,似乎是更好的选择。为了克服铁氧体/六方铁氧体基微波吸收体的脆性并使其具有柔性,可以将六方铁氧体分散到热塑性聚合物或橡胶类主体材料中。
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Hexaferrite Based Flexible Polymeric Nanocomposites for Microwave Absorbing Applications
The flexible microwave absorbers are being considered as new generation materials which have wide applications in the local area network, wireless data communication, radar systems, satellite communication, satellite television, electronic devices and the heating systems, etc. A number of dielectric, magnetic, and magneto – dielectric materials are frequently used as microwave absorbers for various applications. The carbonaceous materials like carbon fiber, carbon nanotubes, graphite and graphene and inorganic materials like metals, metal oxides, and conducting alloys are used to develop the dielectric microwave absorber because of their conducting loss property. The magnetic materials like magnetic metals and their compounds are used to produce magnetic microwave absorber due to their hysteresis loss property. The combined features of the dielectric and magnetic materials together assist in the preparation of magneto – dielectric microwave absorbers. The spinel ferrites are generally employed as magnetic components for the design of microwave absorbing materials. However, the spinel ferrite based microwave absorbers have usually been reported to work at frequencies below 1 GHz. A very high amount of spinel ferrites (~70 90 wt %) is required for the design of microwave absorber working above 1 GHz frequency (for example, X-band). However, such high content of spinel ferrites makes the absorbers as heavy in weight due to which their applications in the aerospace industry are constrained. Apart from the heavy weight, the spinel ferrite based microwave absorbers are also restricted in some practical applications due to their large thickness, narrower absorption bandwidths, and the brittleness property. In order to increase the applicability of ferrite based microwave absorbers, the hexagonal ferrites (M-type) appear to be better option due to their relatively high magnetic losses resulting into broadband and efficient microwave absorber for the higher frequency applications (X-band). To circumvent the brittleness of the ferrite/hexagonal ferrite based microwave absorbers and to make them flexible, the hexagonal ferrites can be dispersed into the thermoplast polymers or rubber like host materials.
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