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Effect of Thermal Fatigue Property of Hot Strip Mill Work Roll Materials on the Rolled-in Defects in the Ultra-low Carbon Steel Strips

机译:带钢热轧工作辊材料的热疲劳性能对超低碳钢带材轧制缺陷的影响

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摘要

This work was carried out to prevent the rolled-in defects originated from the roll surface deterioration through the investigation of the effect of the thermal fatigue property of hot strip mill work roll materials on the roll surface deterioration and subsequent surface defects in the cold-rolled ultra-low carbon steel strips. The thermal fatigue property was estimated by conducting the thermal fatigue test for an existing nickel-grain iron and a candidate high speed steel in the temperature range of 200 to 600℃, and its result was interpreted on the base of the microstructures, the mechanical and physical properties of the roll materials. It was found that the high speed steel had much better thermal fatigue property than the nickel-grain iron, which was attributed to a lower carbide content, a higher tensile and compressive strength and a higher thermal conductivity. And then, the effect of the roll materials on the rolled-in defects in the ultra-low carbon steels was investigated by inspecting the work roll surface deterioration in actual hot strip mill and subsequent surface defects in cold-rolled strips. The high speed steel roll with an excellent thermal fatigue property showed much higher resistance against roll surface deterioration than the nickel-grain iron roll, which led to prevention of the surface defects in the cold-rolled ultra-low carbon steel strios.
机译:通过研究热轧机工作轧材的热疲劳特性对冷轧后的轧辊表面劣化及后续表面缺陷的影响,进行了防止轧辊表面劣化引起的轧制缺陷的作业。超低碳钢带。通过对现有镍晶粒铁和候选高速钢在200至600℃的温度范围内进行热疲劳测试,估算其热疲劳性能,并根据微观结构,力学性能和力学性能对结果进行解释。卷材的物理性能。结果发现,高速钢具有比镍粒铁更好的热疲劳性能,这归因于较低的碳化物含量,较高的拉伸和压缩强度以及较高的导热性。然后,通过检查实际热轧机中工作辊的表面变质以及冷轧带钢中随后的表面缺陷,研究了轧辊材料对超低碳钢轧制缺陷的影响。具有优异的热疲劳性能的高速钢辊显示出比镍晶粒铁辊更高的抗辊表面变质性,从而防止了冷轧超低碳钢层中的表面缺陷。

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