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首页> 外文期刊>Oxidation of Metals >Contribution to Understanding Parabolic Oxidation Kinetics of Dilute Alloys. Part Ⅱ: Oxides with Metal Deficit or Oxygen Excess
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Contribution to Understanding Parabolic Oxidation Kinetics of Dilute Alloys. Part Ⅱ: Oxides with Metal Deficit or Oxygen Excess

机译:对理解稀合金抛物线氧化动力学的贡献。第二部分:金属缺乏或氧气过量的氧化物

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Concerning the parabolic oxidation of alloys with a low content of a different valence element it is shown that the Wagner-Hauffe valence approach contains some inaccuracies. This paper is devoted to the growth of an oxide MO with metal deficit or oxygen excess. The case is developed where the doping is high enough to modify the defect concentrations over the entire oxide scale. It is shown that lower-valence metal additions decrease the scaling constant and modify the influence of oxygen pressure. For additions of higher-valence metals, as long as electronic conductivity remains over the whole scale, the limiting step might be the diffusion of ionic defects under only an electric field, with an increase of the scaling constant. When the conductivity becomes essentially ionic over the whole scale the limiting step might be the diffusion of electron holes, and the scaling constant will decrease with an increase in the doping level. Globally the parabolic constant might therefore increase and pass through a maximum before decreasing.
机译:关于具有不同化合价元素含量低的合金的抛物线氧化,表明瓦格纳-霍夫化合价方法存在一些误差。本文致力于金属缺陷或氧过量的氧化物MO的生长。出现了这样的情况,其中掺杂足够高以在整个氧化物尺度上改变缺陷浓度。结果表明,低价金属的添加降低了结垢常数并改变了氧气压力的影响。对于更高价金属的添加,只要电子导电性在整个尺度上保持,限制步骤可能是离子缺陷仅在电场下的扩散,并且尺度常数增加。当电导率在整个尺度上基本上变为离子性时,限制步骤可能是电子空穴的扩散,并且尺度常数将随着掺杂水平的增加而减小。因此,从整体上看,抛物线常数可能会增加,并在减小之前通过最大值。

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