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Grain Boundayr Nucleation of Proeutectoid Ferrite in the an Fe-C-Ni Alloy

机译:Fe-C-Ni合金中共析铁素体的晶界核形核

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The nucleation kinetics of proeutectoid ferrite at austenite grain boundaries were studied in an Fe-C-Ni alloy by observing ferrite particles on fracture facet- along prior austenite grain bondaries. Whereas a large scatter in the ferrite particle numbers was observed among grain boundary facets, the average particle number appeared to increase with isothermal holding time. The particle number measured on the polished surface of specimens applying Schwartz-Saltykov analysis also increased with holding time. Diffusion-controlled growth of a ferrite nucleus was simulated incorporating Gibbs-Thomson capillary effect to indicate that the time for a nucleus to grow to a detectable size was insignificantly small. These results seem to show that ferrite nucleation occurred in a sizable time range and continuous nucleation, rather than site saturation (instantaneous nucleation), may account better for ferrite nucleation kinetics at temperatures of measurement. The difference in ferrite particle numbers between the two methods of measurement is discussed in terms of the possible omission of small particles and non-sphericity of ferrite particles etc.
机译:在Fe-C-Ni合金中,通过观察沿断裂面的铁素体颗粒以及沿前奥氏体晶粒间的键合体,研究了共析铁素体在奥氏体晶界处的形核动力学。尽管在晶界小面中观察到铁素体粒子数有很大的散布,但平均粒子数似乎随着等温保持时间而增加。使用Schwartz-Saltykov分析在样品抛光表面上测得的颗粒数也随保持时间的增加而增加。模拟了结合吉布斯-汤姆森毛细管效应的铁素体核的扩散控制生长,表明铁核生长到可检测大小的时间很小。这些结果似乎表明,铁素体成核发生在相当长的时间范围内,并且连续成核而不是位点饱和(瞬时成核)可能更好地解释了测量温度下铁素体成核动力学。根据可能遗漏的小颗粒和铁素体颗粒的非球形性等方面,讨论了两种测量方法之间的铁素体颗粒数差异。

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