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Chemical Reactions During Sintering of Mn and Mn-Cr Prealloyed Steels in Inert versus Reducing Atmospheres

机译:惰性和还原气氛下Mn和Mn-Cr预合金钢烧结过程中的化学反应

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In this work the reduction during sintering of Mn and/or Cr prealtoyed steels has been studied. In inert atmospheres, the reduction of surface and especially of internal oxides in these steels is shifted to markedly higher temperatures than in Fe-C or conventionally alloyed PM steel grades, reduction being not yet completed at 1300℃. At least at higher alloy element contents, the main reduction starts about 1000℃ compared to 700℃ for Fe-C, in both cases removal of surface oxides being the first major process. Sintering in high purity H_2 results in partial reduction in the 400℃ range, H_2O being formed as the product, but removal of the remaining oxides requires more or less the same high temperatures as in inert atmospheres, and the reaction product is mainly CO, which confirms that at temperatures >1000℃ carbon is the reducing agent in any sintering atmosphere.
机译:在这项工作中,已经研究了预烧结锰和/或铬的还原过程。在惰性气氛中,与Fe-C或常规合金PM钢相比,这些钢的表面还原,特别是内部氧化物的还原转移到明显更高的温度,在1300℃时还原尚未完成。至少在较高的合金元素含量下,与Fe-C的700℃相比,主要还原开始于1000℃左右,在这两种情况下,去除表面氧化物都是首要的工艺。在高纯度的H_2中进行烧结会导致在400℃范围内部分还原,形成H_2O,但要除去残留的氧化物则需要与惰性气氛中大致相同的高温,并且反应产物主要为CO,证实在任何烧结气氛中,> 1000℃的温度,碳都是还原剂。

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