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Experimental study on adhesion of oxide scale on hot-rolled steel strip

机译:热轧带钢上氧化皮附着力的实验研究

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摘要

An experimental method was developed to study the adherence properties of the oxide scale formed on microalloyed low carbon steel after hot strip rolling. The evolution of the oxide scale during laminar cooling was investigated using Gleeble 3500 Thermal-Mechanical Simulator connected with a humid air generator. After the sample cooled down to ambient temperature, the oxide scale was protected by lacquer to prevent the scale from losing. Physicochemical characteristics of the oxide scale were examined and the adherence mechanism was discussed. Decomposed wustite a mixture of α-iron and magnetite (Fe3O4), can substantially improve the integrity of oxide scale. However, large quantities of hematite (Fe2O3) or retained wustite (FeO) were found detrimental to the adhesion of the oxide scale. It is found that the adherence of oxide scales significantly depends on the phase composition of oxide scales with different thickness.
机译:开发了一种实验方法来研究热轧带钢后微合金化低碳钢上形成的氧化皮的附着性能。使用与潮湿空气发生器连接的Gleeble 3500热力机械模拟器研究了层流冷却过程中氧化物水垢的演变。样品冷却至室温后,用漆保护氧化皮,以防止氧化皮丢失。研究了氧化皮的理化特性,并探讨了其附着机理。分解的铁矾石是α-铁和磁铁矿(Fe3O4)的混合物,可以大大改善氧化皮的完整性。但是,发现大量的赤铁矿(Fe2O3)或残留的辉石(FeO)不利于氧化皮的附着。已经发现,氧化皮的附着力在很大程度上取决于具有不同厚度的氧化皮的相组成。

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