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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Analysis of grain growth process in melt spun Fe-B alloys under the initial saturated grain boundary segregation condition
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Analysis of grain growth process in melt spun Fe-B alloys under the initial saturated grain boundary segregation condition

机译:初始饱和晶界偏析条件下熔喷Fe-B合金的晶粒长大过程分析

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摘要

A grain growth process in the melt spun low-solid-solubility Fe-B alloys was analyzed under the initial saturated grain boundary (GB) segregation condition. Applying melt spinning technique, single-phase supersaturated nanograins were prepared. Grain growth behavior of the single-phase supersaturated nanograins was investigated by performing isothermal annealing at 700 °C Combined with the effect of GB segregation on the initial GB excess amount, the thermo-kinetic model [Chen et al., Acta Mater. 57 (2009) 1466] was extended to describe the initial GB segregation condition of nanoscale Fe-B alloys. In comparison of pure kinetic model, pure thermodynamic model and the extended thermo-kinetic model, an initial saturated GB segregation condition was determined. The controlled-mechanism of grain growth under initial saturated GB segregation condition was proposed using two characteristic annealing times (t_1 and t_2), which included a mainly kinetic-controlled process (t=t_2).
机译:在初始饱和晶界(GB)偏析条件下,分析了熔纺低固溶性Fe-B合金中的晶粒生长过程。应用熔融纺丝技术制备了单相超饱和纳米颗粒。通过在700°C下进行等温退火研究了单相过饱和纳米颗粒的晶粒生长行为,并结合了GB偏析对初始GB过量的影响,即热动力学模型[Chen et al。,Acta Mater。Chem。 57(2009)1466]扩展到描述纳米级Fe-B合金的GB初始分离条件。通过比较纯动力学模型,纯热力学模型和扩展的热动力学模型,确定了初始饱和GB偏析条件。利用两个特征退火时间(t_1和t_2),提出了在初始饱和GB偏析条件下晶粒长大的可控机制,主要包括动力学控制过程(t = t_2)。

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