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Nucleation of Proeutectoid Ferrite on Complex Precipitates in Austenite

机译:奥氏体中复杂析出物上共析铁素体的形核

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Effect of various intragranular inclusions or precipitates (MnS, VC and V(C, N)) on the microstructure and kinetics of intragranular ferrite transformation at the temperatures between 973 and 823 K was studied using various Fe-2Mn-(0.13, 0.2)C(mass%) alloys with the small addition of sulfur, vanadium, and nitrogen. In Fe-2Mn-0.13C-50ppmS and Fe-2Mn-0.2C-470ppmS alloys, MnS particles, mostly incoherent in austen-ite, do not act as effective nucleation sites of ferrite. V addition slightly improves the potency of MnS as ferrite nucleation site by forming MnS+VC complex precipitates. The addition of both V and N largely enhances the intragranular nucleation of ferrite idiomorph on the MnS+V(C, N) complex precipitate. It is considered that two factors, i.e., (1) the advantage in the balance of interphase boundary energy and (2) the increase in the fraction of V(C, N) precipitate by the addition of nitrogen, are mainly responsible for the promotion of intragranular ferrite formation on the MnS+V(C, N) complex precipitate.
机译:使用多种Fe-2Mn-(0.13,0.2)C研究了在973至823 K温度下各种晶粒内夹杂物或沉淀物(MnS,VC和V(C,N))对晶粒内铁素体转变的微观结构和动力学的影响(质量%)合金,少量添加硫,钒和氮。在Fe-2Mn-0.13C-50ppmS和Fe-2Mn-0.2C-470ppmS合金中,大多数在奥氏体中不相干的MnS颗粒不充当铁素体的有效成核位点。 V的添加通过形成MnS + VC络合物沉淀物而稍微改善了MnS作为铁素体成核位点的效能。 V和N的添加大大增强了MnS + V(C,N)络合物沉淀物上铁素体独特晶型的晶内形核。据认为,两个因素,即(1)相间边界能平衡的优势和(2)通过添加氮增加V(C,N)沉淀物比例的增加,主要是因为内铁素体形成对MnS + V(C,N)络合物沉淀的影响

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