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Behaviour of copper during high temperature oxidation of steel containing copper

机译:含铜钢高温氧化过程中铜的行为

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It is well known that copper causes the hot shortness problem in steels and is a difficulty when using steel scrap in the steelmaking process. This is due to the property of copper enriching at the scale/metal interface and precipitating there as liquid during the high temperature oxidation of steels containing copper.In this paper, the behaviour of copper during oxidation is investigated. A steel containing copper is oxidized and the distribution of copper in the scale is examined. It is found that copper is not only enriched at the scale/metal interface, but also exists in the upper magnetite (Fe3O4) layer as a state of solid solution and along the grain boundaries of the wustite layer as a metal. From these results an assumption has been proposed that the liquid copper migrates from the scale/metal interface to Fe3O4 layer along the grain boundaries.Quantitative analysis revealed that the copper amount in the scale is greater than that at the scale/metal interface. Further analysis discovered that the amount of copper eliminated from the steel by oxidation is greater than the total amount of copper detected in the sample i.e. at the scale/metal interface, in the Fe3O4 layer, and along the grain boundaries in the scale.
机译:众所周知,铜会引起钢的热脆性问题,并且在炼钢过程中使用废钢时是困难的。这是由于铜在含铜钢的高温氧化过程中在氧化皮/金属界面富集并以液体形式析出的特性。本文研究了铜在氧化过程中的行为。将含铜的钢氧化,并检查氧化皮中铜的分布。发现铜不仅在氧化皮/金属界面富集,而且以固溶状态存在于上部磁铁矿(Fe 3 O 4)层中,并且以金属的形式存在于铁水镁石层的晶界处。根据这些结果,提出了液态铜沿着晶界从氧化皮/金属界面向Fe 3 O 4层迁移的假设。定量分析表明,氧化皮中的铜含量大于氧化皮/金属界面处的铜含量。进一步分析发现,通过氧化从钢中去除的铜量大于在样品中检测到的铜总量,即在氧化皮/金属界面,Fe3O4层以及沿氧化皮中的晶界处检测到的铜总量。

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