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Effects of Boride Former Elements on Recovery and Recrystallization of Reverse-transformed Austenite in Fe-19%Ni Alloy

机译:硼化物前体元素对Fe-19%Ni合金中反相奥氏体恢复和再结晶的影响

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摘要

Effects of various boride former elements (Ta, W, Nb, Ti, Mo) and/or B on recovery and recrystallization of reverse-transformed austenite were examined in carbon-free Fe-19mass%Ni alloys. The combined addition of Nb and B was found to be the most effective in suppressing them; the recrystallization temperature of the reverse-transformed austenite rose up to 1 200 K which is ~ 100 K higher than that of alloys with single addition of boride former element or B. TEM observation of extraction replicas indicated that the retardation of recovery and recrystallization was due to very fine precipitates of Nb-boride. It was made clear from the theoretical analysis on the solubility product of several MB_2-type borides (M = Cr, Mn, Nb, Ti, Mo) that NbB_2 was the most stable over a wide range of temperature (773-1 173 K). This may be the reason why recovery and recrystallization do not occur up to the highest temperature in case of the combined addition of Nb and B.
机译:在无碳的Fe-19mass%Ni合金中,研究了各种硼化物前体元素(Ta,W,Nb,Ti,Mo)和/或B对反相奥氏体恢复和重结晶的影响。 Nb和B的组合添加被发现是最有效的抑制方法。逆相变奥氏体的再结晶温度上升至1200 K,比单添加硼化物前体元素或B的合金的再结晶温度高〜100K。TEM提取物的复制表明,恢复和再结晶的延迟是由于生成非常细的Nb-硼化物沉淀。从对几种MB_2型硼化物(M = Cr,Mn,Nb,Ti,Mo)的溶解度积的理论分析中可以清楚地看出,NbB_2在宽温度范围(773-1 173 K)下最稳定。这可能是在结合添加Nb和B的情况下直到最高温度都不会发生恢复和重结晶的原因。

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