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From Slab Corner Cracks to Edge-Defects in Hot Rolled Strip--Experimental and Numerical Investigations

机译:从板坯角部裂纹到热轧带材的边缘缺陷-实验和数值研究

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摘要

The systematic investigation of the formation of edge defects on hot strips resulting from slab corner cracks generated in continuous casters, affords the development of model-based concepts for the identification of such initial slab cracks. This enables the reduction of material losses during trimming of defective edges. Utilizing the commercial finite element package Deform-3D, systematic massive forming simulations of several consecutive flat and edging passes were performed. The main simulation challenges result from the occurrence of different length scale values in the slab and strip models including edge cracks. The numerical results clearly point out the significant morphological changes of the cracks during rolling and afford valuable indications for a deeper understanding of the underlying process details. The results from metal forming simulations coincide very satisfactorily with the unetched cross-sectional micrographs obtained from an experimental rolling mill. Systematic variation of geometry data enables the identification of the topology of initial slab corner cracks from edge defects detected after hot rolling.
机译:对连铸机中产生的板坯角部裂纹而在热轧带钢上形成边缘缺陷的系统研究,为识别此类初始板坯裂纹提供了基于模型的概念。这能够减少修整缺陷边缘期间的材料损失。利用商业有限元软件包Deform-3D,对几个连续的平整和磨边道次进行了系统的大规模成形仿真。主要的模拟挑战是由于板坯和带钢模型(包括边缘裂纹)中出现不同的长度比例值所致。数值结果清楚地指出了轧制过程中裂纹的显着形态变化,并为深入理解底层工艺细节提供了有价值的指示。金属成型模拟的结果与从实验轧机获得的未蚀刻横截面显微照片非常令人满意。几何数据的系统变化使得能够根据热轧后检测到的边缘缺陷来识别初始板坯拐角裂纹的拓扑。

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