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Hot ductility of C-Mn and microalloyed steels evaluated for thin slab continuous casting process

机译:评估薄板坯连铸过程中C-Mn和微合金钢的热延展性

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摘要

Hot ductility of three grades of C-Mn steel and four grades of microalloyed steel have been evaluated simulating the bending or straightening operation in thin slab continuous casting process. The minimum bending or straightening temperature has been determined from the hot ductility curves generated by plotting per cent reduction in cross-sectional area of specimens against different test temperatures. The results have been discussed by analysing the force elongation curves and the fractographs of all the steels, and possible explanations for the results obtained have been presented. In microalloyed steels containing Nb, multiple troughs are observed in the hot ductility curves instead of single trough observed for remaining steel grades. The ductility is not recovered at 700°C in steels containing Nb, unlike the remaining steel grades. Among the C-Mn steels, steels with higher S content show less ductility. Intergranular fracture is observed in specimens in which ductility obtained is low.
机译:通过模拟薄板坯连铸过程中的弯曲或矫直操作,评估了三种等级的C-Mn钢和四种等级的微合金钢的热延展性。最低弯曲或矫直温度是根据热延展性曲线确定的,该曲线是通过针对不同的测试温度绘制出样品横截面积的减少百分比来绘制的。通过分析所有钢的力伸长曲线和分数线图对结果进行了讨论,并对获得的结果进行了可能的解释。在含Nb的微合金钢中,在热延展性曲线中观察到多个波谷,而不是在其余钢种中观察到一个波谷。与其余钢种不同,在700°C下含Nb的钢无法恢复延展性。在C-Mn钢中,S含量较高的钢的延展性较低。在延展性低的样品中观察到晶间断裂。

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