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Analysis and prevention of side cracking phenomenon occurring during hot rolling of thick low-carbon steel plates

机译:厚低碳钢板热轧过程中产生侧裂现象的分析与预防

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摘要

In this study, a microstructural investigation was conducted on the side cracking phenomenon occurring in thick low-carbon steel plates during hot rolling. Particular emphasis was placed on the role of iron oxides and ferrite-pearlite band structure in the side cracking. Detailed microstructural analyses of the cracked region showed that the ferrite-pearlite band structure in the side region was considerably slanted to the surface, while that in the central region was parallel to the surface. Small cracks were often observed when the iron oxide layer formed by inhomogeneous oxidization along the slanted ferrite-pearlite band structure in the side region within 30 mm from the plate edge was intruded into the interior after hot rolling. In addition to these small cracks, a few large cracks were also found when some protrusions formed on the plate surface were decarburized, folded and then intruded into the interior. Based on these findings, the parallel arrangement of the ferrite-pearlite band structure in the side region by the appropriate control of the hot rolling process and the minimization of the iron oxide formation by the minimized time exposed to high temperatures were suggested in order to prevent or minimize the side cracking.
机译:在这项研究中,对厚的低碳钢板在热轧过程中发生的侧裂现象进行了显微组织研究。特别强调了氧化铁和铁素体-珠光体能带结构在侧裂中的作用。对裂纹区域的详细显微组织分析表明,侧面区域的铁素体-珠光体能带结构明显倾斜至表面,而中心区域的平行于表面。在热轧后,当沿距板边缘30 mm以内的侧面区域中的倾斜铁素体-珠光体带状结构的不均匀氧化形成的氧化铁层侵入内部时,通常会观察到小裂纹。除了这些小裂纹外,当板表面上形成的一些突起脱碳,折叠然后侵入内部时,还会发现一些大裂纹。基于这些发现,建议通过适当控制热轧过程,在侧部区域平行排列铁素体-珠光体能带结构,并通过减少暴露在高温下的时间使铁氧化物的形成最小化,以防止或最小化侧面开裂。

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