Ni-Cr基合金的蠕变行为和显微组织

T. Gibbons, B. Hopkins
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引用次数: 28

摘要

摘要在800℃的标准热处理条件下,研究了不同体积分数γ′析出相的一系列以Nimonic 101为基体的合金在不同晶粒尺寸下的蠕变行为。为了评估这类高Cr合金的长期组织稳定性,还对850℃下过时效5000和10000 h的材料进行了蠕变试验。利用光学和电子金相技术研究了材料的微观结构特征。结果表明,随着γ′析出物体积分数的增加,材料的抗蠕变性能也随之提高,但在粗晶材料中效果更为显著。过时效后,合金的抗蠕变性能和断裂寿命降低,显微组织中出现了针状颗粒,认为是γ′相。讨论了当前描述位错-粒子相互作用机制的一些局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creep behaviour and microstructure of Ni-Cr base alloys
AbstractThe creep behaviour of a series of alloys based on IN 597 (Nimonic 101) and with varying volume fractions of γ′ precipitate has been studied at 800°C in the standard condition of heat treatment and for two grain sizes. In order to assess the long-term structural stability of alloys of this type, which have high contents of Cr, creep tests were also carried out on material overaged for 5000 and 10000 h at 850°C. Optical and electron metallography have been used to examine the microstructural characteristics of the materials. The results show a consistent pattern of increasing creep resistance with increasing volume fraction of γ′ precipitate, although the effect was more significant in the coarse grained material. After overaging, the creep resistance and the life to rupture of the alloys were reduced, and acicular particles, believed to be γ′ phase, were observed in the microstructure. Some limitations of current mechanisms describing dislocation–particle interactions are discussed with respect to...
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