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首页> 外文期刊>Mathematical research letters: MRL >Influence of long-term isothermal aging on microstructure and creep rupture properties of Ni-base superalloy M4706
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Influence of long-term isothermal aging on microstructure and creep rupture properties of Ni-base superalloy M4706

机译:长期等温老化对Ni碱超合金M4706微观结构和蠕变破裂性能的影响

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摘要

After a standard heat treatment, the microstructural evolution with time during isothermal aging at 850 degrees C and its effect on the creep rupture properties of the Ni-base superalloy M4706 at 870 degrees C and 370 MPa are investigated. It is found that as the aging time increases from 0 to 5000 h, the average diameter of coarse gamma' increases from 241 to 484 nm, and the distribution of the carbides at grain boundaries changes from discontinuous to continuous. Moreover, experimental observations on the microstructures of all the crept specimens reveal that dislocation bypassing controls the creep deformation. Thus, it is concluded that the transitions in the microstructures result in the degeneration of the creep rupture properties of the experimental alloy with aging time.
机译:在标准热处理后,研究了在850℃下等温老化期间的微观结构演化及其对870℃和370MPa的Ni-Base超合金M4706的蠕变破裂性能的影响。 结果发现,随着老化时间从0到5000小时增加,粗γ'的平均直径从241增加到484nm,并且在晶界处的碳化物分布从不连续到连续变化。 此外,关于所有漂流标本的微观结构的实验观察表明,位错旁路控制蠕变变形。 因此,得出结论,微结构中的转变导致具有老化时间的实验合金的蠕变破裂性能的退化。

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