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Auger electron spectroscopy depth profiling of Fe-oxide layers on electromagnetic sheets prepared by low temperature oxidation

机译:低温氧化法制备的电磁片上铁氧化物层的俄歇电子能谱深度剖析

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Auger electron spectroscopy depth profiling was applied to characterize the Fe-oxide layers prepared by low temperature oxidation of Fe electromagnetic sheets produced on an industrial line for applications in the field of electrical motors. In addition the surface morphology, layer composition and layer structure were analysed by electron microscopy, energy dispersive X-ray spectroscopy and X-ray diffraction techniques. We found that the oxide layers on Fe-sheets with good adhesion between the oxide layer and Fe-substrate, consist mainly of magnetite and to a smaller extent of haematite; the layers are typically thinner than 1 μm and the interface between the oxide layer and the Fe-substrate is relatively broad, i.e. up to 0.3 μm. On the contrary, a decrease of adhesion between the oxide layer and the Fe-substrate was found when the layer is thicker than 1 μm and the layer/substrate interface is narrow and contaminated by foreign elements.
机译:应用俄歇电子能谱深度剖析来表征通过在工业领域生产的,用于电动机领域的Fe电磁板的低温氧化而制备的Fe氧化物层。另外,通过电子显微镜,能量色散X射线光谱和X射线衍射技术分析了表面形态,层组成和层结构。我们发现,铁片上的氧化物层在氧化物层和铁基体之间具有良好的附着力,主要由磁铁矿组成,而赤铁矿的含量较小;这些层通常薄于1μm,并且氧化物层和Fe-衬底之间的界面相对较宽,即最高达0.3μm。相反,当该层厚于1μm并且层/基底界面狭窄并且被异物污染时,发现氧化物层与Fe-基底之间的粘附力降低。

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