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STUDY ON THE MICROSTRUCTURAL EVOLUTION OF DIFFERENT COMPONENT ALLOYS CONSISTING OF B2-NiSc INTERMETALLICS

机译:B2-NIC金属间金属间组成的不同组分合金的微观结构演化研究

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摘要

Ni-50%Sc and Ni-51%Sc alloy were prepared with a vacuum arc smelting and water cooled copper mold suction-casting machine. The results showed that the two component alloys consisted of the primary phase B2-NiSc and lamellar (Ni_2Sc+NiSc)eutectic due to the loss of Sc during melting. Two groups of alloys underwent (970 °C, 72 h) homogenization heat treatment, and spherical or plate shape Ni_2Sc particles were dispersed on the B2-NiSc matrix. With the increase of Sc content from 50% to 51%, the amount of the second phase in the alloy decreases, the microstructure becomes uniform, and the grain gradually changes from long bar to a spherical particle. According to the Jackson boundary theory, the Jackson factor a of B2-NiSc =0.5 < 2, so the interface is rough, which explains that the growth pattern of the B2-NiSc phase is a non-faceted growth. It is consistent with the dendritic growth pattern of the B2-NiSc phase, which is observed from the experiment. After a long heat treatment, the number of vacancies decreases and the microstructure became uniform. The loss rate of Sc in rapidly quenched solidification was higher than that after the heat treatment.
机译:使用真空电弧熔炼和水冷铜模具吸塑机制备Ni-50%SC和Ni-51%SC合金。结果表明,由于熔化期间Sc的损失,两个组分合金由初级相B2-NISC和层状(NI_2SC + NISC)共晶组成。两组接受(970℃,72小时)均质化热处理和球形或板形状Ni_2SC颗粒的合金分散在B2-NISC基质上。随着SC含量的增加,50%至51%,合金中的第二相的量减少,微观结构变得均匀,并且晶粒从长条逐渐变化到球形颗粒。根据杰克逊边界理论,B2-NIC = 0.5 <2的杰克逊因子A,因此界面粗略,这解释了B2-NIC阶段的生长模式是非刻面的生长。它与B2-NIC阶段的树突生长模式一致,从实验中观察到。在长时间的热处理之后,空位的数量降低,微观结构变得均匀。快速淬火凝固中SC的损失率高于热处理后的损失率高。

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