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Comparison of the cation inversion parameter of the nanoscale milled spinel ferrites with that of the quenched bulk materials

机译:纳米级尖晶石型铁氧体与淬火块状材料阳离子转化参数的比较

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摘要

The high-energy milling process is known to induce numerous changes in materials. In this contribution, it is pointed out that the milling of ferrimagnetic oxides leads to an extensive structural disordering such as non-equilibrium distribution of cations over the two non-equivalent cation sublattices provided by the spinel structure. The cation inversion parameter of the nanoscale milled spinel ferrites is compared with that of the bulk materials quenched from high temperatures. The degrees of inversion of 0.73 and 0.41, characterising the mechanically-induced disorder in nanosized MgFe_2O_4 and ZnFe_2O_4, respectively, correspond to the bulk ferrites quenched from about 1300 and 1700 K, respectively.
机译:众所周知,高能研磨工艺会引起材料的多种变化。在该贡献中,指出了亚铁磁性氧化物的研磨导致广泛的结构紊乱,例如在尖晶石结构提供的两个非等价阳离子亚晶格上阳离子的不平衡分布。将纳米铣削尖晶石铁氧体的阳离子转化参数与高温淬火的块状材料的阳离子转化参数进行比较。分别表征纳米MgFe_2O_4和ZnFe_2O_4的机械诱导无序的特征的0.73和0.41的反转度分别对应于从大约1300和1700 K淬火的块状铁素体。

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