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首页> 外文期刊>Materials transactions >Grain Boundary Segregation of Phosphorus and Columnar Grain Growth during Decarburization In Plain Carbon Steels
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Grain Boundary Segregation of Phosphorus and Columnar Grain Growth during Decarburization In Plain Carbon Steels

机译:普通碳素钢脱碳过程中磷的晶界偏析和柱状晶粒长大

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摘要

During decarburization of plain carbon steels, the grain boundary segregation concentration of phosphorus increased with increasing bulk phosphorus content and with decreasing decarburization temperature. The grain growth kinetics decreased with increasing bulk phosphorus content which is due to the grain boundary pinning effect of highly segregated phosphorus. After decarburization at 973 K for 24 h, the columnar grain growth following the abnormal grain growth was observed in the steel containing a low bulk phosphorus content, while the steel containing a high bulk phosphorus content showed only the abnormal grain growth behavior. Such grain growth behaviors can be understood in the light of the abnormal grain growth driven by the grain boundary carbides and the solute drag effect of highly segregated phosphorus on moving grain boundaries. During decarburization at 1173K, only the normal grain growth was observed due to the absence of grain boundary carbides, regardless of the bulk phosphorus content. The decarburization reaction in the present study can be expressed by the parabolic relationship x = k(Dt)~(1/2) where x is the decarburization depth, k the reaction coefficient, D the diffusivity of carbon and t the decarburization time.
机译:在普通碳钢的脱碳过程中,磷的晶界偏析浓度随着整体磷含量的增加和脱碳温度的降低而增加。随着高磷含量的增加,晶粒的生长动力学下降,这是由于高度偏析的磷的晶界钉扎效应所致。在973 K脱碳24 h后,在低磷含量的钢中观察到了异常晶粒生长后的柱状晶粒生长,而高磷含量的钢仅表现出异常的晶粒生长行为。可以从晶界碳化物驱动的异常晶粒生长以及高偏析磷对移动的晶界的溶质拖曳效应来理解这种晶粒生长行为。在1173K的脱碳过程中,由于没有晶界碳化物,仅观察到正常晶粒生长,而与总磷含量无关。本研究中的脱碳反应可以通过抛物线关系表示为x = k(Dt)〜(1/2),其中x是脱碳深度,k是反应系数,D是碳的扩散率,t是脱碳时间。

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