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Failure of high-chromium iron roll in compact strip production MILL

机译:紧凑型带材轧机中高铬铁辊的故障

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A high chromium (HiCr) iron work roll broke in three pieces in finishing stand 4 in a compact strip production (CSP) mill of a steel company. This roll breakage was examined by means of visual inspection, analysis of the mill process data, and chemical and microscopic analysis of a sample from the spheroidal graphite (SG) iron roll core. The roll broke due to inferior quality of the roll core. Due to strong contamination with chromium (1.5%), far above the limit for the CSP mill (max. 0.50%Cr), the core microstructure contained abundant millimeter-sized (Cr,Fe)-carbide clusters, leading to a poor impact toughness.The quality criteria in the test report were adequate, and depending on the data the mill put the roll in service. Unfortunately, the supplied roll contained incorrect data with respect to the chromium level (0.5%Cr) and to a lesser extent the Mo levels in the roll core after solidification. If the test certificate had shown the actual core composition, would have been rejected and the roll failure would have been prevented.The paper describes the causes of the roll failure manufactured from high chrome grade steel along with the precautionary measure.
机译:高铬(HiCr)铁工作辊在一家钢厂的紧凑带材生产(CSP)轧机的精轧机架4中分成三部分。通过目视检查,轧机工艺数据分析以及球墨铸铁(SG)铁辊芯样品的化学和微观分析,检查了这种辊断裂。由于辊芯质量较差,辊断裂。由于铬的严重污染(1.5%),远远超过了CSP轧机的极限(最大0.50%Cr),因此芯部微结构包含大量的毫米级(Cr,Fe)-碳化物簇,导致较差的冲击韧性测试报告中的质量标准已经足够,并且取决于轧机投入使用的数据。不幸的是,所提供的轧辊中关于铬含量(0.5%Cr)的数据不正确,固化后轧辊芯中的钼含量较低。如果测试证书显示了实际的芯部成分,则将其拒收并防止轧辊故障。本文介绍了由高铬等级钢制造的轧辊故障的原因以及预防措施。

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