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Quantification of Displacement Fields from Lattice Images (HREM) and Electron Exit Waves in Nanostructured Composite Oxides

机译:纳米结构复合氧化物中晶格图像(HREM)和电子出口波的位移场的定量

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Oxide composites have been produced by means of mechanical milling and sintering. Such materials consist of magnetic particles embedded in an insulating oxide matrix, which can have application as magnetic wave absorbers. Different systems have been investigated including MgO-MgFe_2O_4, FeO-Fe_3O_4 and other more complex ferrites. Milling induces the formation of a solid solution of cations and oxygen. Depending on temperature and system, sintering can produce a particle dispersion or simply the starting of the corresponding phase transformation. Spark plasma sintering was performed between 773 and 1373 K in order to reduce both processing time and temperature. High resolution (HREM) and conventional transmission electron microscopy show that an spinodal decomposition takes place in the system FeO-Fe_3O_4 during transformation from the solid solution. Generally the oxygen lattice is unique throughout the material but there is a distinctive distribution of cations giving rise to a particle dispersion having an spinel structure in a insulating matrix with a NaCl cubic structure.
机译:通过机械研磨和烧结制造了氧化物复合材料。这种材料由嵌入在绝缘氧化物基质中的磁性颗粒组成,其可以具有施加作为磁波吸收剂的氧化物。研究了不同的系统,包括MgO-MgFe_2O_4,Feo-Fe_3O_4和其他更复杂的铁氧体。铣削诱导形成阳离子和氧的固溶体。根据温度和系统,烧结可以产生颗粒分散体或仅仅是相应相变的开始。火花等离子体烧结在773和1373k之间进行,以减少处理时间和温度。高分辨率(HREM)和常规透射电子显微镜表明,在从固溶体的转化期间在系统FeO-Fe_3O_4中进行纯硅膜分解。通常,氧晶格在整个材料中是独特的,但是阳离子的独特分布产生颗粒分散体,其具有具有NaCl立方结构的绝缘基质中的尖晶石结构。

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