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Effects of Cr and Fe Addition on Microstructure and Tensile Properties of Ti-6Al-4V Prepared by Direct Energy Deposition

机译:Cr和Fe添加对通过直接能量沉积制备的Ti-6Al-4V微观结构和拉伸性能的影响

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The effects of Cr and Fe addition on the mechanical properties of Ti-6Al-4V alloys prepared by direct energy deposition were investigated. As the Cr and Fe concentrations were increased from 0 to 2mass%, the tensile strength increased because of the fine-grained equiaxed prior phase and martensite. An excellent combination of strength and ductility was obtained in these alloys. When the Cr and Fe concentrations were increased to 4mass%, extremely fine-grained martensitic structures with poor ductility were obtained. In addition, Fe-added Ti-6Al-4V resulted in a partially melted Ti-6Al-4V powder because of the large difference between the melting temperatures of the Fe eutectic phase (Ti-33Fe) and the Ti-6Al-4V powder, which induced the formation of a thick liquid layer surrounding Ti-6Al-4V. The ductility of Fe-added Ti-6Al-4V was thus poorer than that of Cr-added Ti-6Al-4V.
机译:研究了Cr和Fe添加对通过直接能量沉积制备的Ti-6Al-4V合金的机械性能的影响。 随着Cr和Fe浓度从0从0增加到2mass%,由于细菌的先前相和马氏体,抗拉强度增加。 在这些合金中获得了优异的强度和延展性的组合。 当Cr和Fe浓度增加到4mass%时,获得了延展性差的极其细粒的马氏体结构。 另外,由于Fe共晶相(Ti-33Fe)和Ti-6Al-4V粉末的熔化温度与Ti-6Al-4V粉末的熔化温度之间的差异有很大差,Fe加入的Ti-6Al-4V导致部分熔化的Ti-6Al-4V粉末。 诱导围绕Ti-6Al-4V的厚液体层的形成。 因此,Fe加入的Ti-6Al-4V的延展性比Cr加入的Ti-6Al-4V更差。

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