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Preparation of micro-nano hollow multiphase ceramic microspheres containing MnFe_2O_4 absorbent by self-reactive quenching method
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作者 Hong-Fei Lou Jian-Jiang Wang +2 位作者 Zhi-Ning Zhao Xu-Dong Cai Yong-Shen Hou 《Rare Metals》 SCIE EI CAS CSCD 2013年第6期592-598,共7页
Fe–Fe2O3–MnO2–sucrose–epoxy resin and O2 as reaction system and feed gas,separately,were used to prepare micro-nano hollow multiphase ceramic microspheres containing MnFe2O4absorbent by self-reactive quenching met... Fe–Fe2O3–MnO2–sucrose–epoxy resin and O2 as reaction system and feed gas,separately,were used to prepare micro-nano hollow multiphase ceramic microspheres containing MnFe2O4absorbent by self-reactive quenching method which is integrated with flame jet,selfpropagating high-temperature synthesis(SHS),and rapidly solidification.The morphologies and phase compositions of hollow microspheres were studied by scanning electron microscope(SEM),transmission electron microscope(TEM),X-ray diffraction(XRD),and energy dispersive spectroscopy.The results show that the quenching products are regular spherical substantially with hollow structure,particle size is between few hundreds nanometers and 5 lm.Phase compositions are diphase of Fe3O4,Mn3O4,and MnFe2O4,and the spinel soft magnetic ferrite MnFe2O4 with microwave magnetic properties is in majority.Collisions with each other,burst as well as‘‘refinement’’of agglomerate powders in flame field may be the main reasons for the formation of micro-nano hollow multiphase ceramic microspheres containing MnFeOabsorbent. 展开更多
关键词 Self-reactive quenching method micro-nano hollow multiphase ceramic microspheres Collisions and burst Refinement
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低温自反应淬熄法制备微纳米钡铁氧体空心复相陶瓷微珠吸波剂
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作者 王建江 娄鸿飞 +2 位作者 许宝才 侯永伸 高海涛 《硅酸盐学报》 EI CAS CSCD 北大核心 2014年第5期677-682,共6页
以Fe(NO3)3-Ba(NO3)2-CO(NH2)2-酚醛树脂-硅烷偶联剂KH550为反应体系,采用低温自反应淬熄法结合热处理工艺,制备了微/纳米钡铁氧体空心复相陶瓷微珠。通过扫描电子显微镜、X射线衍射仪、透射电子显微镜、热分析及高速摄影技术测定了热... 以Fe(NO3)3-Ba(NO3)2-CO(NH2)2-酚醛树脂-硅烷偶联剂KH550为反应体系,采用低温自反应淬熄法结合热处理工艺,制备了微/纳米钡铁氧体空心复相陶瓷微珠。通过扫描电子显微镜、X射线衍射仪、透射电子显微镜、热分析及高速摄影技术测定了热处理前后微纳米钡铁氧体空心复相陶瓷微珠的形貌、结构及组成,并研究了其形成机理。结果表明:热处理前空心复相陶瓷微珠粒径为0.59至27.1μm,主要为非晶态;热处理后复相陶瓷微珠由六角晶型的Ba3Fe32O51、BaFe12O19和Ba5Fe14O26组成,且表现出片晶与固溶体相互交叉的现象。特殊的试验条件使得团聚粉粒子在火焰场中飞行过程中在受热蓄能阶段、热释放阶段、后燃烧阶段与快速凝固阶段都具有不同的反应机理,从而使得尺寸细化,具有较微米级微珠不同的本征参数。 展开更多
关键词 微纳米钡铁氧体空心复相陶瓷微珠 低温自反应淬熄法 热处理 吸波剂
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