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Effect of hot rolled grain size on the precipitation kinetics of nitrides in low carbon Al-killed steel

机译:热轧晶粒度对低碳铝镇静钢中氮化物析出动力学的影响

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摘要

The precipitation of nitrides plays a general role in the industrial processing of deep drawing quality Al-killed low carbon steels. In this paper, the effect of hot rolled grain size on the precipitation of nitrides has been analysed. To evaluate the effect of grain size on the nitride precipitation kinetics, thermoelectric power based investigations have been performed on hot and cold rolled specimens. In the hot rolled state, the precipitation of nitrides occurs more intensively in the fine grain size microstructure (average grain size = 9 μm) than in the large grain size microstructure (average grain size = 23 μm) until the precipitated fraction of nitrides reaches about 70%. In the cold rolled state the effect of grain size is much less significant; probably the precipitation process occurs simultaneously at the grain boundaries and along dislocations. According to the simulation results, significant differences can be found between the precipitated fraction of nitrides in fine and large grain size sheets coiled in the temperature range 550-650℃. In this interval, the precipitated nitride fraction is about two times larger in a fine grain microstructure (9 μm) than in sheets with 23 μm average grain size. The local position in the coil also affects significantly the precipitated fraction of nitrides. In the outer ring of the coil, less than 20% precipitated fraction is predicted in coiling temperature range 550-700℃. However, in the middle ring of a hot rolled coil, the precipitated fraction changes from 5% to 85% with increasing coiling temperature from 550 to 700℃.
机译:氮化物的沉淀在深拉伸优质铝镇静低碳钢的工业加工中起着普遍作用。在本文中,已经分析了热轧晶粒尺寸对氮化物沉淀的影响。为了评估晶粒尺寸对氮化物沉淀动力学的影响,已经对热轧和冷轧试样进行了基于热电功率的研究。在热轧状态下,与大晶粒微结构(平均晶粒度= 23μm)相比,细晶粒微结构(平均晶粒度= 9μm)中氮化物的析出更加集中,直到氮化物的沉淀分数达到70%。在冷轧状态下,晶粒尺寸的影响要小得多。沉淀过程可能同时发生在晶界和位错处。根据模拟结果,在550-650℃的温度范围内盘绕的细晶粒和大晶粒片材中,氮化物的沉淀分数之间存在显着差异。在此间隔中,细晶粒微观结构(9μm)中沉淀的氮化物分数约为平均粒径为23μm的片材的两倍。线圈中的局部位置也显着影响氮化物的沉淀分数。在卷材的外圈中,在550-700℃的卷材温度范围内,预计析出率不到20%。然而,在热轧卷的中间环中,随着卷取温度从550℃升高到700℃,沉淀分数从5%变为85%。

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