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Ni_(0.4)Co_(0.24)Zn_(0.36)La_xFe_(2-x)O_4铁氧体微波吸收特性的研究 被引量:3

Study of Microwave Absorbing Properties of Ni_(0.4)Co_(0.24)Zn_(0.36)La_xFe_(2-x)O_4
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摘要 采用溶胶-凝胶工艺制备了Ni_(0.4)Co_(0.24)Zn_(0.36)La_xFe_(2-x)O_4铁氧体,利用XRD和微波网络矢量分析仪对其相成分和吸收特性进行研究,实验发现:适量掺杂镧时能够增大吸收频带宽度,改善吸收性能;当x=0.07时,最大吸收可达38.55dB,几乎在整个频段内吸收量都大于15dB,这非常有利于作为高频吸波材料。通过对Ni_(0.4)Co_(0.24)Zn_(0.36)La_(0.07)Fe_(0.93)O_4铁氧体烧结温度的分析,发现在1000℃烧结,晶粒只有80nm左右,吸收性能最好。 Ni0.4Co0.24Zn0.36LaxFe2-xO4 ferrite was prepared by solgel method. The crystal structure and microwave absorption properties were analyzed by XRD and microwave vector network analyzer. The results indicate that doping appropriate amount of rare earth lanthanum can increase absorbing band width and improve absorbing properties. When x is 0. 07, the highest absorption value reaches 38.55dB, and the absorption value reaches more than 15dB almost in all frequency hand which is beneficial to high frequency absorbing material. Through the analysis of sintering temperature for Ni0.4Co0.24Zn0.36LaxFe2-xO4 ferrite, it is found that when the sampleis sintered at 1000℃, the grain size is only about 80nm and the absorbing perforrnanee is best.
出处 《稀土》 EI CAS CSCD 北大核心 2011年第4期35-39,共5页 Chinese Rare Earths
基金 内蒙古教育厅高等学校自然科学重点项目(NJ09002)
关键词 溶胶-凝胶 Ni0.4Co0.24Zn0.36LaxFe2-xO4 微波吸收性能 sol - gel Ni0.4Co0.24Zn0.36LaxFe2-xO4 microwave absorbing properties
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  • 1Satoshi Sugimoto, Kazuaki Haga, Toshio Kagotani, et al. Microwave absorption properties of Ba M - type ferrite prepared by a modified coprecipitation method [ J ]. Magn Magn mater, 2005,290-291: 1181-1191.
  • 2Alexandre R Bueno, Maria L Gregori, Maria C S Nobrega. Microwave - absorbing properties of Ni0. 50-x Zn0. 50 - x Me2xFe2 O4 ( Me = Cu, Mn, Mg) ferrite - wax composite in X - band frequencies [ J ]. Magn Magn mater,2008,320 : 864- 870.
  • 3Cheng - Hsiung Peng, Chyi - Ching Hwang, Jun Wan, et al. Microwave - absorbing characteristics for the composites of thermal - plastic polyurethane (TPU) - bond NiZn -ferrites prepared by combustion synthesis method [J]. Mat Sci Eng B,2005,117:27-36.
  • 4Lima U R, Nasar M C, Rezende M C, et al. Synthesis of NiCuZn ferrite nanoparticles and microwave absorption characerization [ J ]. Mat Sci Eng B, 2008,320 : 1146- 1150.
  • 5JianLiang Xie, Mangui Han, Liang Chen, et al. Microwave -absorbing properties of NiCoZn spinel ferrites [ J ]. Magn Magn mater,2007,314:3742.
  • 6Jingjing Sun, Jianbao Li, Geiiang Sun. Effects of La2O3 and Gd2O3 on some properties of Ni-Zn ferrite[J]. Magn Magn mater,2002,250:20-24.
  • 7Anna Gruskova, Jozef Slama, Rastislav Dosoudil, et al. Microwave properties of some substituted LiZn ferrites [J]. Magn Magn mater,2008,320:860-864.
  • 8Yeon Hwang. Microwave absorbing properties of NiZn - ferrite synthesized from waste iron oxide catalyst[ J]. Mater Letters,2006,60:3277-3280.
  • 9张伟,李国栋,孙银凤.溶胶-凝胶自燃烧法合成镍铜锌纳米晶铁氧体及其吸波性能的研究[J].稀土,2007,28(4):43-46. 被引量:5
  • 10蒋仁培,魏克珠,微波铁氧体理论与技术[M],北京:科学出版社,1982:380-390.

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