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The Internal Oxidation of Ternary Alloys. VI: The Transition from Internal to External Oxidation of the Most-Reactive Component under Intermediate Oxidant Pressures

机译:三元合金的内部氧化。六:在中等氧化剂压力下,反应性最高的组分从内部氧化到外部氧化的转变

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摘要

The conditions for the transition from internal to external oxidation of the most-reactive component C of ternary A–B–C alloys are examined, assuming the presence of external scales of the oxide of the component of intermediate reactivity B. For this, approximate expressions for the diffusion coefficient of oxygen and for the concentration of oxygen dissolved in the binary A–B alloy matrix within the zone of internal oxidation as functions of the composition of the metal matrix within the zone of internal oxidation are used. Numerical calculations of the critical content of C needed for this transition are carried out for different combinations of values of the various parameters involved. The results obtained for the ternary alloys are compared with the corresponding data calculated for the binary A–C and B–C alloys under oxygen pressures insufficient to oxidize the most-noble alloy component. This allows to predict the possibility of existence of a third-element effect under intermediate oxidant pressures.
机译:假设存在中间反应性B成分的氧化物的外部水垢,检查了三元A–B–C合金中反应性最高的成分C从内部氧化转变为外部氧化的条件。为此,近似表达式使用氧的扩散系数和内部氧化区内溶解在二元A–B合金基体中的氧浓度作为内部氧化区内金属基体成分的函数。对于涉及的各种参数的值的不同组合,进行了此转变所需的C的临界含量的数值计算。将三元合金获得的结果与在氧气压力不足以氧化最贵重合金成分的情况下为二元A-C和B-C合金计算的相应数据进行比较。这允许预测在中等氧化剂压力下存在第三元素效应的可能性。

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  • 来源
    《Oxidation of Metals》 |2004年第6期|391-410|共20页
  • 作者

    Y. Niu;

  • 作者单位

    State Key Laboratory for Corrosion Protection Institute of Metal Research Chinese Academy of SciencesDI CheP Università di Genova;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    internal oxidation; ternary alloys; high temperatures; intermediate oxidant pressures;

    机译:内部氧化;三元合金;高温;中等氧化剂压力;

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