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The Role of Oxygen Transfer in Sintering of Low Alloy Steel Powder Compacts: A Review of the 'Internal Getter' Effect

机译:氧转移在低合金钢粉末压坯烧结中的作用:“内部吸气剂”效应的综述

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摘要

The chemical aspects of sintering have to be considered, in particular the role of oxygen. For sintered alloy steels used for highly stressed components, traditional alloy elements have been Cu, Ni and Mo, which in their oxygen affinity are very similar to the base constituent iron. Advanced alloying systems however contain Cr, Mn and/or Si. In the present study it is shown that one of the principal aspects of sintering to be considered is oxygen transfer from the base iron oxides to the alloy elements, which then form oxides that are more difficult to reduce. This process, defined as "internal gettering", occurs both in mixed powder compacts and in prealloyed materials, although through different mechanisms. The effect can at least be alleviated by presintering in H-2 in the 400A degrees C range, part of the oxygen being removed as H2O before internal gettering becomes kinetically effective. However, in industrial practice, this collides with delubricaton. Furthermore for both alloy variants high temperature sintering is advantageous because it enhances reduction of the more stable oxides, thus eliminating the effects of internal gettering.
机译:必须考虑烧结的化学方面,特别是氧气的作用。对于用于高应力部件的烧结合金钢,传统的合金元素为Cu,Ni和Mo,它们的氧亲合力与基础成分铁非常相似。但是,先进的合金系统包含Cr,Mn和/或Si。在本研究中表明,要考虑的烧结的主要方面之一是氧气从基体氧化铁转移到合金元素,然后形成难以还原的氧化物。尽管通过不同的机理,该过程被定义为“内部吸气”,发生在混合粉末压块和预合金材料中。至少可以通过在400°C的H-2温度下进行预烧结来减轻这种影响,在内部吸气变得有效之前,一部分氧气以H2O的形式被去除。但是,在工业实践中,这会与脱润滑剂发生冲突。此外,对于两种合金变体,高温烧结是有利的,因为它增强了更稳定的氧化物的还原,从而消除了内部吸气的影响。

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