首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of NaNO3 foaming agent on barium ferrite hollow microspheres prepared by self-reactive quenching technology
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Effect of NaNO3 foaming agent on barium ferrite hollow microspheres prepared by self-reactive quenching technology

机译:NaNO3发泡剂对自反应淬火技术制备钡铁氧体空心微球的影响

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摘要

Al + Fe2O3 + BaO2 and NaNO3 as the reactive system and the foaming agent, respectively, are used to prepare barium ferrite hollow microspheres (BFHMs) by self-reactive quenching technology based on flame spraying technology, self-propagating high-temperature synthesis (SHS) technology and quick chilling technology. Effects of NaNO3 on the particle size, morphology, phase structure and microwave absorption properties of BFHMs are investigated through SEM, XRD, particle size analyzer, high-speed camera and vector network analyzer. The results show that, after adding 10 wt.% NaNO3, the average particle size of BFHMs decreases initially from 28 mu m to 6 mu m, as well as the particle distribution gets narrower. Micro-nano lamellar crystals appear on the surface of BFHMs, with the dimension ranging from 500 nm to 2 mu m. BaFe2O4 and Fe3O4, which have spinel structures, can be seen in XRD, and they are beneficial for microwave absorption properties. The real part (epsilon'), imaginary part (epsilon '') of permittivity, and the imaginary part of permeability (mu '') increases in 0.5-18 GHz. The real part (mu') of permeability increases in 0.5-10.3 GHz, while decreases in 10.3-18 GHz. The microwave absorption properties are improved greatly, and the minimum reflectivity decreases from - 3.1 dB to - 9.8 dB. The reasons for improvement of microwave absorption properties after adding NaNO3 foaming agent may be the decreasing of the particle size of BFHMs, the appearance of ferrites (BaFe2O4 and Fe3O4) with spinel structure and special micro-nano tabular crystals. Magnetoplumbite-type barium ferrites (BaFe12O19) hollow microspheres are obtained after heat-treatment and the microwave absorption properties are further improved. (C) 2015 Elsevier B.V. All rights reserved.
机译:Al + Fe2O3 + BaO2和NaNO3分别作为反应体系和发泡剂,通过基于火焰喷涂技术的自反应淬火技术,自蔓延高温合成(SHS)来制备钡铁氧体空心微球(BFHM)。 )技术和快速冷却技术。通过SEM,XRD,粒度分析仪,高速相机和矢量网络分析仪研究了NaNO3对BFHMs的粒径,形貌,相结构和微波吸收性能的影响。结果表明,在添加10重量%的NaNO 3之后,BFHM的平均粒径最初从28μm减小到6μm,并且颗粒分布变窄。微纳米层状晶体出现在BFHM的表面,尺寸范围为500 nm至2μm。在XRD中可以看到具有尖晶石结构的BaFe2O4和Fe3O4,它们对微波吸收性能有利。介电常数的实部(ε'),虚部(ε')和磁导率的虚部(mu')在0.5-18 GHz中增加。磁导率的实部(mu')在0.5-10.3 GHz中增大,而在10.3-18 GHz中则减小。微波吸收性能大大提高,最小反射率从-3.1 dB降低到-9.8 dB。加入NaNO3发泡剂后改善微波吸收性能的原因可能是BFHMs的粒径减小,尖晶石结构的铁素体(BaFe2O4和Fe3O4)的出现以及特殊的微纳米板状晶体。经过热处理得到了磁铅石型钡铁氧体(BaFe12O19)中空微球,并进一步提高了微波吸收性能。 (C)2015 Elsevier B.V.保留所有权利。

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