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首页> 外文期刊>Metallurgical and Materials Transactions B >Effect of Cooling Rate on the Precipitation Behavior of Carbonitride in Microalloyed Steel Slab
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Effect of Cooling Rate on the Precipitation Behavior of Carbonitride in Microalloyed Steel Slab

机译:冷却速率对微合金钢坯中碳氮化物析出行为的影响

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摘要

In the continuous casting of the microalloyed steel, the slab surface transversal cracking could be prevented through the control of the slab surface microstructure, which correlates with the precipitation behavior of carbonitrides in the microalloyed steel. Therefore, the cooling rate is the key factor to determine the precipitation behavior of carbonitrides. This article used confocal laser scanning microscopy to study the effect of different cooling rates on the precipitation behavior of the carbonitrides in the microalloyed steel slab. When the cooling rate is less than 3 K·s−1, the precipitates in the steel are coarse, growing out along the austenite grain boundaries, and form a chain-like distribution. These precipitates seriously reduced the hot ductility of slab. Quantitative study between the cooling rate and the precipitation behavior of carbonitrides in microalloyed steel also has been developed. The results of this study could be used to improve the understanding of the slab surface microstructure controlling to enhance the hot ductility of the slab and avoid the surface crack of the slab.
机译:在微合金钢的连续铸造中,通过控制板坯表面的微观结构可以防止板坯表面的横向开裂,这与微合金钢中碳氮化物的析出行为有关。因此,冷却速率是决定碳氮化物沉淀行为的关键因素。本文使用共聚焦激光扫描显微镜研究了不同冷却速率对微合金钢坯中碳氮化物沉淀行为的影响。冷却速度小于3K·s -1 时,钢中的析出物粗大,沿着奥氏体晶界生长,并形成链状分布。这些沉淀物严重降低了板坯的热延展性。在微合金钢中冷却速度和碳氮化物的析出行为之间的定量研究也已经开展。这项研究的结果可以用来增进对板坯表面微观结构的了解,以控制板坯的热延展性并避免板坯的表面开裂。

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