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Surface defect evolution in hot rolling of high-Si electrical steels

机译:高Si电钢热轧中的表面缺陷演化

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Surface defects on metal strip products can have their root cause created in the hot rolling process by cavities and indents entrapped scale. The initial size and aspect ratio of surface features are critical parameters that determine whether they will be eliminated by the rolling process. The present research investigates the effects of the initial cavity geometry and the evolution mechanisms in a single hot rolling pass for a high-silicon electrical steel substrate. Laboratory hot-rolling experiments were carried out on blocks with open cavities of different geometries machined into the surface. The final geometry of the longitudinal and transversal profiles of the deformed cavities was analysed from metallurgical cross-sections. For a given initial cavity width, the width of the resulting oxide-filled defect is inversely related to the initial depth of the machined cavity. It has also been observed that the depth of defects increases linearly with the original depth to width aspect ratio of the initial cavities. Cavities with a depth of less than 1 mm essentially disappeared after the rolling. The final length is only dependent on its initial length in the rolling direction. The percentage reduction of cross-sectional area of the defects is found to increase with the initial depth and width of the cavities.
机译:上金属带材产品的表面缺陷可以有自己的根源在热轧过程通过截留规模腔和缩进创建。的表面特征的初始尺寸和纵横比是确定它们是否将被滚动处理被消除的关键参数。本研究调查的初始腔几何形状的单个热轧通行证的高硅电工钢基板上的效果和进化机制。实验室热轧进行实验上的块具有不同几何形状的开放腔体机加工成的表面。的变形腔的纵向和横向轮廓的最终几何形状由冶金横截面进行分析。对于给定的初始腔宽度,所得到的氧化物填充的缺陷的宽度是负相关的加工腔的初始深度。还已经观察到,缺陷的深度与原始的深度到初始腔宽度的纵横比线性增加。具有小于1mm的深度的空腔轧制后基本上消失了。最终长度仅取决于在轧制方向其初始长度。缺陷的截面积的百分比减少被发现以增加与空腔的初始深度和宽度。

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