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Austenite grain growth prediction coupling with drag and pinning effects in low carbon Nb microalloyed steels

机译:低碳Nb微合金钢的奥氏体晶粒生长预测与阻力和钉扎效应耦合

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摘要

A metallurgical model has been developed to predict the austenite grain growth in Nb microalloyed steels. The mutual effects of Nb(CN) particle pinning and Nb solute drag on grain growth kinetics are studied. The particle dissolution, the undissolved particle coarsening and the changes in Nb solute in solution during reheating or isothermal heat treatment process are taken into account in the model. It is shown that, besides the pinning exerted by the NbC precipitates, the solute drag of Nb in solid solution plays an important role in the inhibition of austenite grain growth in Nb microalloyed steels. The Nb solute drag effect on grain growth decreases with increasing temperature because the grain boundary can gradually break away from the solute atmosphere in the higher velocity region at high temperature. The mean austenite grain size sluggishly increases with temperature in the low temperature region, while it significantly increases in the relative high temperature region. The predicted austenite grain size concerning the combined effect of Nb drag and Nb(CN) pinning is in good agreement with the experimental results from the literature.
机译:已经开发了冶金模型来预测Nb微合金钢中的奥氏体晶粒长大。研究了Nb(CN)钉扎和Nb固溶阻力对晶粒生长动力学的相互影响。该模型考虑了再加热或等温热处理过程中的颗粒溶解,未溶解的颗粒粗大化和溶液中Nb溶质的变化。结果表明,固溶态的Nb固溶阻力除了由NbC析出物施加的钉扎作用外,在抑制Nb微合金钢中奥氏体晶粒长大中也起着重要作用。 Nb固溶阻力对晶粒生长的影响随着温度的升高而减小,因为在高温下,晶界可以逐渐脱离高速区域中的溶质气氛。在低温区域,平均奥氏体晶粒度随温度缓慢增加,而在相对高温区域,则显着增加。关于Nb阻力和Nb(CN)钉扎的综合作用的预测奥氏体晶粒尺寸与文献的实验结果非常吻合。

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