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Phase equilibrium between austenite and MX carbonitride in a 9Cr-1 Mo-V-Nb steel

机译:9Cr-1 Mo-V-Nb钢中奥氏体与MX碳氮化物之间的相平衡

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Precipitation behavior during normalizing heat treatment has been investigated on a 9Cr-1 Mo-V-Nb steel. Heterogeneously distributed spherical MX (M = Nb, V, Cr and X=C, N) carbonitride particles and platelet M_3C (M = Fe, Cr) carbide were observed in the as normalized condition. Number of the precipitates decreased with increasing normalizing temperature and no precipitates was observed after normalizing at 1 250 deg C. Although the size of M_3C was almost constant independent of normalizing temperature, that of MX increased with increase in normalizing temperature up to 1 200 deg C. For MX carbonitride, not only size, but also composition of metallic elements was influenced by normalizing temperature. Since equilibrium composition of MX carbonitride depends on temperature, MX particle with non-equilibrium composition dissolves and precipitation of it takes place with its equilibrium composition at the normalizing temperature. A phase field diagram of NbX-VX quasi binary system in a 9Cr-1 Mo-V-Nb steel was experimentally determined. It has been supposed that precipitation of M_3C takes place during cooling from normalizing temperature in the surrounding area of MX particles where the concentration of niobium and vanadium in matrix is poor.
机译:在9Cr-1 Mo-V-Nb钢上研究了正火热处理过程中的沉淀行为。在归一化条件下,观察到异质分布的球形MX(M = Nb,V,Cr和X = C,N)碳氮化物颗粒和血小板M_3C(M = Fe,Cr)碳化物。随正火温度的升高,析出物的数量减少,在1250℃进行正火后未观察到析出物。尽管M_3C的大小几乎与常数温度无关,但随着正火温度的升高,直到1200℃,MX的尺寸均增加对于MX碳氮化物,归一化温度不仅影响尺寸,而且影响金属元素的组成。由于MX碳氮化物的平衡组成取决于温度,因此具有非平衡组成的MX颗粒会溶解,并且在正火温度下会以其平衡组成发生沉淀。实验确定了9Cr-1 Mo-V-Nb钢中NbX-VX准二元体系的相场图。可以认为,在正常温度下冷却过程中,在基质颗粒中铌和钒的浓度较差的MX颗粒周围区域,M_3C的沉淀发生。

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