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Development of Materials for the Making of Rolling-Mill Rolls for Hot-Strip Mills

机译:用于制作轧机轧辊的材料的开发

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The main mechanisms of degradation of rolling-mill rolls for hot-strip mills are: abrasion, oxidation, adhesion (sticking) and thermal fatigue. Consequently, these result in degradation phenomena such as: abrasive wear, oxidative wear, sliding wear, oxidative banding and others. Under these circumstances, the tribological behavior of rolling-mill rolls is affected. Conversely, microstructural and process parameters have a key role on the performance of alloys utilized in the production of rolling-mill rolls. Increasing the performance and resistance against the phenomena described above has been a critical challenge for roll manufacturers. This paper highlights the latest developments in multi-component white cast iron and ICDP alloys applied to hot-rolling mills. The development of these new alloys consisted in the making of pilot-scale samples. Microstructural and metallurgical analysis was conducted to correlate the behavior of alloys and degradation phenomena. After the analysis real-scale trials were carried out. The results were analyzed and allowed for the A^ of a new generation of alloys for hot-strip mills.
机译:热带轧机轧制轧辊轧辊劣化的主要机理是:磨损,氧化,粘附(粘附)和热疲劳。因此,这些导致降解现象,如:磨料磨损,氧化磨损,滑动磨损,氧化条带等。在这种情况下,轧机卷的摩擦学行为受到影响。相反,微观结构和工艺参数对轧机轧辊生产中使用的合金的性能具有关键作用。提高上述现象的性能和抵抗是卷制造商的关键挑战。本文突出了应用于热轧厂的多组分白铸铁和ICDP合金的最新发展。这些新合金的发展组成的是试验规模样本。进行微观结构和冶金分析以相关的关联合金和降解现象的行为。分析实际规模试验后进行。分析结果并允许热带轧机的新一代合金。

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