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Yttrium-doped strontium hexaferrite particles for microwave absorption application in X-band

机译:钇掺杂的锶六倍葡萄酒颗粒,用于微波吸收应用在X波段中

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摘要

Yttrium-doped strontium hexaferrites particles, Sr_(1-x)Y_xFe_(12)O_(19) (x = 0.1, 0.2 and 0.3), are developed using auto combustion method. The doping resulted in partial replacement of Fe~(3+) ions with Fe~(2+) ions which is found to be an effective method to tune microwave absorption properties of strontium hexaferrite. The XRD spectrum confirmed the formation of ferrite with no secondary phase present. All the developed samples showed platelet-like morphology with an average particle size of 590 nm for the undoped sample. The average particle size decreased with the increase in the Y doping. The hysteresis loop revealed that the saturation magnetization increased with increase in doping concentration of yttrium in strontium hexaferrite. On the contrary, coercivity decreased from 296 to 209 G due to decrease in the magnetic anisotropy of the ferrite. The frequency-dependent dielectric and magnetic loss tangent are increased with the increase of Y doping. The sample with x = 0.3 showed the best impedance matching with the free space with an average normalized impedance of 1.28. The attenuation constant was also found to be maximum i.e., 85.6 for x = 0.3. The reflection loss is investigated for a frequency range from 8.2 GHz to 12.4 GHz (X-band) and indicated maximum reflection loss of -18.91 dB with -10 dB bandwidth of 2.18 GHz for x = 0.3 for coating thickness of 2.6 mm. The current study presents the Yttrium-doped strontium hexaferrites, Sr_(0.7)Y_(0.3)Fe_(12)O_(19), as a strong candidate for the microwave absorption application.
机译:钇掺杂的六氢颗粒颗粒,SR_(1-X)Y_XFE_(12)O_(19)(x = 0.1,0.2和0.3),采用自燃方法开发。掺杂导致部分替代Fe〜(3+)离子的Fe〜(2+)离子,该Fe〜(2+)离子被发现是调节六氢锶锶的微波吸收性能的有效方法。 XRD光谱证实了铁氧体的形成,没有二次相。所有开发样品显示出血小板状形态,平均粒径为590nm,用于未掺杂的样品。随着Y掺杂的增加,平均粒度降低。滞后回路显示饱和磁化强度随着六桥锶钇掺杂浓度的增加而增加。相反,由于铁氧体的磁各向异性降低,矫顽力从296降至209克。随着Y掺杂的增加,频率依赖性介电和磁力损失切线增加。具有X = 0.3的样品显示了与自由空间匹配的最佳阻抗,平均归一化阻抗为1.28。还发现衰减常数是最大的I.,85.6,X = 0.3。研究了反射损耗,从8.2GHz到12.4GHz(X波段)的频率范围内,并指示最大反射损耗为-18.91dB,对于X = 0.3的X = 0.3的-10 dB带宽为2.6mm。目前的研究呈现钇掺杂的六氢葡萄酒,Sr_(0.7)Y_(0.3)Fe_(12)O_(19),作为微波吸收施用的强烈候选者。

著录项

  • 来源
    《Journal of materials science 》 |2020年第16期| 13746-13755| 共10页
  • 作者单位

    CSIR-Central Scientific Instruments Organisation Chandigarh 160030 India Academy of Scientific and Innovative Research (ACSIR) Ghaziabad 201002 India;

    CSIR-Central Scientific Instruments Organisation Chandigarh 160030 India Academy of Scientific and Innovative Research (ACSIR) Ghaziabad 201002 India;

    CSIR-Central Scientific Instruments Organisation Chandigarh 160030 India Academy of Scientific and Innovative Research (ACSIR) Ghaziabad 201002 India;

    DRDO-Terminal Ballistic Research Laboratory Sector 30 Chandigarh 160030 India;

    Special Materials Group DRDO-DMSRDE Kanpur Uttar Pradesh 208013 India;

    CSIR-Central Scientific Instruments Organisation Chandigarh 160030 India Academy of Scientific and Innovative Research (ACSIR) Ghaziabad 201002 India Department of Ubiquitous Analytical Techniques CSIR-Central Scientific Instruments Organization Chandigarh 160030 India;

  • 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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