首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Studies on dielectric and magnetic properties of barium hexaferrite and bio-waste derived activated carbon composites for X-band microwave absorption
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Studies on dielectric and magnetic properties of barium hexaferrite and bio-waste derived activated carbon composites for X-band microwave absorption

机译:用于六升流石和生物废弃物衍生活性炭复合材料的介质和磁性性能研究X波段微波吸收

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摘要

The effect of the addition of bio-waste derived activated carbon (AC) on magnetic and dielectric properties of barium hexaferrite (BaFe12O19) has been investigated for microwave absorption application. Activated carbon was synthesized from banana peel while the low-density barium hexaferrite was fabricated by using the auto-combustion method. The composites consisting of highly conducting activated carbon and magnetic barium hexaferrite were prepared by using the low-cost ball-milling method. The addition of activated carbon in the ferrite matrix resulted in increased reflection loss due to interfacial polarization. The dielectric permittivity and dielectric loss tangent of BaFe12O19 showed a gradual increase with addition of AC. The magneto-crystalline anisotropy is however reduced with AC addition which resulted in decreasing values of saturation magnetization and magnetic loss tangent. The impedance matching, attenuation constant and reflection loss of the composites were calculated to determine their microwave absorption. The composite comprising of 40% BaFe12O19 and 60% AC showed the maximum reflection loss of -35.5 dB in X-band for coating thickness 1.3 mm. The 90% microwave absorption of the composite was achieved in the frequency range from 9.8 to 11.8 GHz. The results showed that the microwave absorption property of BaFe12O19 can be tuned in X-band by the addition of activated carbon. (C) 2021 Elsevier B.V. All rights reserved.
机译:研究了添加生物废弃物衍生活性炭(AC)对用于微波吸收的六铁氧体钡(BaFe12O19)磁性和介电性能的影响。以香蕉皮为原料合成活性炭,采用自燃法制备低密度六铁氧体钡。采用低成本球磨法制备了由高导电活性炭和磁性钡铁氧体组成的复合材料。在铁氧体基体中加入活性炭,由于界面极化,导致反射损失增加。BaFe12O19的介电常数和介电损耗角正切随交流的加入而逐渐增加。然而,交流的加入降低了磁晶各向异性,导致饱和磁化强度和磁损耗角正切值降低。通过计算复合材料的阻抗匹配、衰减常数和反射损耗来确定其微波吸收。由40%BaFe12O19和60%AC组成的复合材料在X波段的最大反射损耗为-35.5 dB,涂层厚度为1.3 mm。在9.8~11.8ghz的频率范围内,复合材料的微波吸收率达到90%。结果表明,活性炭的加入可以在X波段调节BaFe12O19的微波吸收性能。(c)2021爱思唯尔B.V.保留所有权利。

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