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Rapid growth of nickel dendrite in highly undercooled Ni-Mo alloys

机译:高度过冷的Ni-Mo合金中镍枝晶的快速生长

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Ni-39.3%Mo, Ni-45%Mo hypoeutectic alloys and Ni-47.7%Mo eutectic alloy have been rapidly solidified with different droplet sizes by containerless processing in a drop tube. For Ni-39.3%Mo hypoeutectic alloy, which corresponds to the maximum solid solubility of nickel phase, the solidification microstructure is characterized by nickel dendrite plus (Ni+NiMo) eutectic structure. The undercooling of this alloy up to 182 K has been realized in the experiments. With an increase in undercooling, the dendritic microstructure is refined. The microstructural evolution of primary Ni phase in Ni-45%Mo hypoeutectic alloy evolves from remelted dendrite to equiaxed grains, whereas Ni-47.7%Mo eutectic alloy exhibits a structural transition from lamellar eutectic to anomalous eutectic. Theoretical analyses indicate that, for Ni-39.3%M6, Ni-45%Mo and Ni-47.7%Mo alloys, the nickel phase shows a transition from solutal-diffusion-controlled growth to thermal-diffusion-controlled growth at undercoolings of 66.6, 81.9 and 85.0 K. The critical transition temperature decreases with a reduction in the nickel content.
机译:Ni-39.3%Mo,Ni-45%Mo的亚共晶合金和Ni-47.7%Mo的共晶合金已经通过在滴管中进行无容器加工而以不同的液滴尺寸快速凝固。对于与镍相最大固溶度相对应的Ni-39.3%Mo亚共晶合金,其凝固组织为镍枝晶和(Ni + NiMo)共晶结构。实验中已经实现了该合金的过冷至182K。随着过冷度的增加,树枝状微结构得以细化。 Ni-45%Mo亚共晶合金中原始Ni相的微观组织演变是从重熔枝晶转变为等轴晶,而Ni-47.7%Mo共晶合金则表现出从层状共晶到反常共晶的结构转变。理论分析表明,对于Ni-39.3%M6,Ni-45%Mo和Ni-47.7%Mo合金,在过冷度为66.6时,镍相显示出从溶扩散控制的生长转变为热扩散控制的生长, 81.9 K和85.0K。临界转变温度随镍含量的降低而降低。

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