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FORMATION OF AUSTENITE GRAIN IN HYPO-PERITECTIC CARBON STEELS

机译:低晶包碳钢中奥氏体晶粒的形成

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摘要

When hypo-peritectic carbon steel is quenched during unidirectional solidification, the region of fine columnar grain is observed. It is classified into two coexisting phases. One is coexisting phases of liquid, delta and gamma in the upper part of the region, and the other is coexisting phases of delta and gamma in the lower part of the region. To form the coexisting part of the three phases means that solidification in this experiment proceeds in non-equilibrium state. The size of the narrow side of one fine columnar grain coincides with the arm spacing of a primary dendrite and this result is the same as the hyper-peritectic carbon steel. However, the boundary of the fine grain in the hypo-peritectic carbon steel is formed in different location from that of the hyper-peritectic carbon steel. The former is formed in the skeleton of the dendrite, while the latter is formed in the interspacing of the dendrite. The region of the fine grain changes suddenly to that of the coarse grain when the delta phase in the coexisting part of two phases disappears completely. Therefore, the delta phase in the hypo-peritectic carbon steel might prevent the growth of gamma grain. In order to recognize it, ferrite formers such as Mo, V and Ni are added in the sample. Then, the longitudinal length of the fine columnar grain extends in the sequence of the no addition, Mo, V and Nb.
机译:当在单向凝固过程中将球包碳钢淬火时,观察到细的柱状晶粒区域。它分为两个共存阶段。一种是在该区域的上部液体,δ和γ的共存相,另一种是在该区域的下部δ和γ的共存相。形成这三个阶段的共存部分意味着该实验中的凝固以非平衡状态进行。一个细柱状晶粒的窄边尺寸与一次枝晶的臂间距一致,并且该结果与超包晶碳钢相同。然而,次包晶碳钢中细晶粒的边界形成在与高包晶碳钢不同的位置。前者形成在枝晶的骨架中,而后者形成在枝晶的间隔中。当两相的共存部分中的δ相完全消失时,细晶粒的区域突然变为粗晶粒的区域。因此,亚包晶碳钢中的δ相可能会阻止γ晶粒的生长。为了识别它,在样品中添加了铁素体形成剂,例如Mo,V和Ni。然后,细圆柱状晶粒的纵向长度按不添加Mo,V和Nb的顺序延伸。

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