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首页> 外文期刊>Journal of materials science >Elucidation of microwave absorption mechanisms in Co-Ga substituted Ba-Sr hexaferrites in X-band
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Elucidation of microwave absorption mechanisms in Co-Ga substituted Ba-Sr hexaferrites in X-band

机译:阐明X波段Co-Ga取代Ba-Sr六价铁氧体的微波吸收机理

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摘要

The tunable microwave absorbers are used to combat the electromagnetic pollution created by the development of high speed electronic devices. In the present paper, we report microwave absorption characteristics of M-type Ba~(0.5)Sr~(0.5)Co~(x)Ga~(x)Fe~(12−2x)O~(19)(x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0) hexagonal ferrite compositions prepared by using double sintering ceramic method. X-ray diffraction analysis of the prepared compositions revealed the formation of M-phase along with the minor traces of hematite in substituted compositions. The microwave absorption has been elucidated substantially through various mechanisms in the test frequency range from 8.2 to 12.4 GHz, which is still partially explored in literature. The substitution of Co_(2+)and Ga_(3+)ions enhances microwave absorption, bandwidth, decreases thickness and improves impedance matching. The hysteresis parameters also comply with the microwave absorption. The optimal reflection loss of − 29.74 dB is observed in the composition x = 0.2 at 8.28 GHz with 2.0 mm thickness. The investigated mechanisms of microwave absorption can be incorporated to optimize the absorption and design of the microwave absorbers.
机译:可调谐微波吸收器用于抵抗高速电子设备的发展所产生的电磁污染。本文报道了M型Ba〜(0.5)Sr〜(0.5)Co〜(x)Ga〜(x)Fe〜(12-2x)O〜(19)(x = 0.0)的微波吸收特性(0.2、0.4、0.6、0.8和1.0),六方铁氧体组合物通过双烧结陶瓷方法制备。所制备的组合物的X射线衍射分析表明,在取代的组合物中M相的形成以及微量的赤铁矿。在8.2至12.4 GHz的测试频率范围内,已经通过各种机制充分阐明了微波吸收,目前在文献中仍对此进行了部分探讨。 Co_(2+)和Ga_(3+)离子的取代增强了微波吸收,带宽,减小了厚度并改善了阻抗匹配。磁滞参数也符合微波吸收。在厚度为2.0毫米的8.28 GHz处,组成x = 0.2时观察到最佳反射损耗为− 29.74 dB。可以结合研究的微波吸收机理来优化微波吸收器的吸收和设计。

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  • 来源
    《Journal of materials science》 |2018年第17期|14995-15005|共11页
  • 作者单位

    Department of Electronics and Communication Engineering, Sant Longowal Institute of Engineering and Technology, Longowal,Department of Electronics and Communication Engineering, CT Institute of Engineering and Management Technology;

    Department of Electronics and Communication Engineering, Lovely Professional University;

    Department of Electronics and Communication Engineering, Sant Longowal Institute of Engineering and Technology, Longowal;

    Department of Electronics Technology, Guru Nanak Dev University;

    Department of Physics, Electronics and Space Science, University School of Sciences, Gujarat University;

    Department of Physics and Materials Science, University of Memphis;

    Institute of Advanced Materials and Technology, University of Science and Technology Beijing;

    School of Physics, University of Hyderabad;

    Department of Electronics and Communication Engineering, Indian Institute of Technology;

    Department of Physics and Materials Science, University of Memphis;

    Department of Physics, Electronics and Space Science, University School of Sciences, Gujarat University;

    Department of Physics, Telecommunications and Materials Science and Engineering Laboratory (LOCEM), Federal University of Ceara-UFC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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