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Microstructure Evolution and Compression Properties of a Directionally Solidified Ni-24.8Nb Hypereutectic Alloy

机译:定向凝固Ni-24.8%Nb过共晶合金的组织演变和压缩性能

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At normal solidification conditions, in-situ composites of a Ni-24.8%Nb hypereutectic alloy can be produced at growth velocities below 5um/s, with a thermal gradient of 180K/cm, and this low productivity remarkably restricts the application of this kind of in-situ composites. In this paper, we proposed an approach that employs an abrupt growth velocity to make the in-situ composites grow stably out of the coupled zone. In-situ composites of the Ni-24.8%Nb hypereutectic alloy were obtained at a growth velocity of 100μm/s and the productivity was greatly improved. This value is in the same order magnitude imposed on the single-crystal superalloys. The compression strengths were investigated on different microstructures involving the coupled eutectics and non-coupled eutectics. The results showed that the crack distribution and extension were mainly localized in primary Ni_3Nb dendrites in the non-coupled eutectics, and that in-situ composites with the entirely coupled eutectics have improved mechanical properties and different deformation behaviors.
机译:在正常的固化条件下,Ni-24.8%Nb过共晶合金的原位复合材料可以以低于5um / s的生长速度,180K / cm的热梯度生产,并且这种低生产率明显限制了这种方法的应用。原位复合材料。在本文中,我们提出了一种方法,该方法利用突然的生长速度使原位复合材料稳定地生长到耦合区域之外。 Ni-24.8%Nb过共晶合金的原位复合材料以100μm/ s的生长速度获得,生产率大大提高。该值具有施加在单晶高温合金上的相同数量级。在涉及耦合共晶和非耦合共晶的不同微观结构上研究了抗压强度。结果表明,裂纹的分布和扩展主要集中在非耦合共晶中的原始Ni_3Nb枝晶中,具有完全耦合共晶的原位复合材料具有改善的力学性能和不同的变形行为。

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