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Effect of Reheating on Grain Size Evolution in High Strength Linepipe Steel.

机译:再加热对高强度管线钢的晶粒尺寸演变的影响。

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摘要

The effects of slab reheat temperature and soaking time are studied to characterize austenite grain growth, microstructure homogeneity and dissolution of precipitates in linepipe X80 grade steel. It is shown that the uniformity of austenite microstructure strongly depends on the slab reheat temperature and soaking time. With increasing reheat temperature an abnormal growth of individual grains is observed that stems from gradual dissolution of microalloy carbonitrides. As the result, individual grain boundaries become unpinned and mobile thus "nucleating" secondary recrystallization. The highest reheat temperature at which the dissolution kinetics of precipitates is still slow enough to prevent the onset of secondary recrystallization within long soaking times is 1160℃. The as reheated austenite microstructure and the character of austenite grain size distribution are inherited throughout the entire roughing rolling sequence and even further downstream to the finishing rolling entry.
机译:研究了扁坯再热温度和保温时间的影响,以表征X80级管线钢中奥氏体晶粒的生长,组织的均匀性和析出物的溶解。结果表明,奥氏体组织的均匀性在很大程度上取决于板坯的再加热温度和保温时间。随着加热温度的升高,观察到单个晶粒的异常生长,这是由于微合金碳氮化物逐渐溶解而引起的。结果,各个晶界变得不固定且可移动,从而“成核”了二次再结晶。最高的再加热温度为1160℃,在该温度下,沉淀物的溶解动力学仍然很慢,足以防止二次再结晶在长的浸泡时间内开始。再加热时的奥氏体组织和奥氏体晶粒尺寸分布的特性在整个粗轧过程中,甚至在精轧入口的更下游都得到了继承。

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