首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Scale Spallation During Coiling on the Electrochemical and Pickling Behavior of a Hot-Rolled Dual-Phase Steel
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Effect of Scale Spallation During Coiling on the Electrochemical and Pickling Behavior of a Hot-Rolled Dual-Phase Steel

机译:卷积过程中旋转介质在热轧双相钢的电化学和酸洗行为期间的影响

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摘要

Tertiary oxide scale consists of magnetite and hematite, and in dual-phase steel strips were observed after the exit of final rolling stand in a thin slab casting rolling (TSCR) mill. Microscopic observation confirmed that these scales cracked and spalled off from many places of surface during coiling causing a non-uniform oxide layer on the steel surface. The present work discusses the synergistic effect of such non-uniform oxide layer and run-out-table cooling water on the electrochemical behavior of the dual-phase steel. The electrochemical response was assessed with the help of dynamic and linear polarization tests considering cooling water as electrolyte. The presence of non-uniform scale produced high cathodic (scaled zone) to anodic (spalled-off zone) area ratio that eventually led to extensive pitting corrosion in the present steel. Furthermore, the pickling behavior of the steel was also studied in detail. It was observed that the steel surface, with spalled-off area of about one-tenth of total surface area, corroded preferentially 3-4 times faster at spalled-off area than that of the uniformly pickled surface. The characterization study was performed using scanning electron microscopy, confocal laser 3D scanning microscopy, x-ray diffraction and Raman spectroscopy in order to establish the reasons for pitting corrosion due to the scale spallation.
机译:亚氧化物尺度由磁铁矿和赤铁矿组成,在薄的板坯铸造轧制(TSCR)磨机中的最终轧制架的出口后观察到双相钢带。显微镜观察证实这些刻度在卷绕期间从诸多表面裂开并剥离,导致钢表面上的非均匀氧化物层。本作本作品探讨了这种非均匀氧化物层和流出台冷却水对双相钢电化学行为的协同效应。根据电解质考虑冷却水的动态和线性偏振试验,评估电化学响应。非均匀刻度的存在产生高阴极(缩放区域)至阳极(剥离区)面积比,最终导致本钢中的大量蚀刻腐蚀。此外,还详细研究了钢的酸洗行为。观察到钢表面,剥离面积约为10分的总表面积,优先于闪光区域比均匀腌表面更快地腐蚀3-4倍。使用扫描电子显微镜,共聚焦激光3D扫描显微镜,X射线衍射和拉曼光谱进行表征研究,以确定由于刻度介绍引起的蚀腐蚀的原因。

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