Effect of small amounts of nitrogen and silicon on microstructure and properties of MAR-M002 nickel-base superalloy

G. Durber, S. Osgerby, P. Quested
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引用次数: 24

Abstract

AbstractThe microstructure and the tensile and stress-rupture properties of the nickel-base superalloy M A R-M002 have been studied using material of normal commercial composition and three melts with additions of 0·0024 and 0·0050%N and of 0·16%Si. Increasing the nitrogen content resulted in a change in carbide morphology, from ‘Chinese script’ to a blocky form, and to increased microporosity. Interference-film microscopy revealed characteristic centres in some of the blocky carbides that had high Ti contents consistent with carbide nucleation on Ti(C, N) particles formed in the melt. The increased nitrogen content was associated with a significant decrease in the rupture life at 760°C and 695 MN m−2, and a change in the fracture morphology. In the Si-doped alloy, which contained little microporosity, there were increased amounts of a phase rich in Ni–Hf (probably Ni5Hf) that also contained Si, but there was only a slight decrease in stress-rupture properties.
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少量氮和硅对MAR-M002镍基高温合金组织和性能的影响
摘要采用普通工业成分的材料和添加0.0024%、0.0050% n和0.16% si的三种熔体,研究了镍基高温合金m.a R-M002的显微组织、拉伸和断裂性能。氮含量的增加导致碳化物形态的变化,从“汉字”到块状,并增加了微孔隙度。干涉膜显微镜显示,一些块状碳化物的特征中心具有较高的Ti含量,这与熔体中形成的Ti(C, N)颗粒上的碳化物成核一致。在760°C和695 MN m−2条件下,氮含量的增加与断裂寿命的显著降低以及断裂形态的变化有关。在微孔隙率较小的掺硅合金中,含有Si的富Ni-Hf(可能是Ni5Hf)相数量增加,但应力断裂性能仅略有下降。
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