连铸过程中横向角裂纹的分析及与室内试验的比较

M. Gontijo, C. Hoflehner, S. Ilie, J. Six, C. Sommitsch
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引用次数: 0

摘要

连铸生产的低合金钢板坯会出现横向角裂纹,由于裂纹内形成氧化层,这是非常关键的。通过实验室测试了解这种类型的故障和现象的再现性对于处理这一问题具有重要价值。目前的工作分析了板坯角落的样品,在那里发现了裂缝。用扫描电子显微镜(SEM)观察断口表面,并用光学显微镜(LOM)分析断口表面的微观结构。利用刻蚀法揭示板坯样品的微观结构,可以看出裂纹是在先前的奥氏体晶界处开始和扩展的。此外,将拐角样品的SEM图像与先前工作中连铸过程的物理模拟图像进行了比较,发现的结构与在临界温度下测试的结构相似。在显微组织分析中也发现了同样的现象,裂纹也沿着晶界延伸。因此,用BETA 250-5试验机对原位熔化试样进行的室内试验结果与连铸工艺的实际情况吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of transverse corner cracks from continuous casting process and comparison to laboratory experiments
Abstract Low alloyed steel slabs produced by continuous casting can present transverse corner cracks, which are critical due to the oxide layer formed within the crack. Understanding this type of failure and reproducibility of the phenomenon through laboratory tests is of great value for dealing with this problem. The present work analyzed samples from slab corners, where cracks were identified. The fracture surfaces were examined using a scanning electron microscope (SEM) and cut to have their microstructure analyzed with a light optical microscope (LOM). Using etching to reveal the microstructure of the samples from the slabs, it was seen that the cracks were initiated and propagated at the prior austenite grain boundaries. Furthermore, the SEM images from the corner samples were compared to those from the physical simulation of the continuous casting process from previous work, and the structure found was like the ones tested at critical temperatures. The same was noted for the microstructure analysis, where cracks were also seen to follow the grain boundaries. Therefore, it was concluded that the behavior resulted from the laboratory tests performed with in-situ melted samples with the BETA 250-5 machine were in good accordance with the reality of the continuous casting process.
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