ISIJ International
Online ISSN : 1347-5460
Print ISSN : 0915-1559
ISSN-L : 0915-1559
Stacking Faults and Transformation of γ′ Metastable Precipitates in an Fe-29Ni-22Co-4Nb-2Cr-1Ti-0.5Al-0.5Si Alloy
Kiyoshi KusabirakiTakeshi AmanoSanshi MotoShigeoki Saji
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ジャーナル オープンアクセス

2004 年 44 巻 1 号 p. 197-202

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抄録
In this study, we investigate an Fe-29Ni-22Co-4Nb-2Cr-1Ti-0.5Al-0.5Si heat resistant alloy (refer to herein as alloy 929C), in which the γ′ phase is the precipitation-strengthening phase. The specimens of alloy 929C are solid-solution heat treated and aged within a temperature range of 993 to 1 073 K for up to 1 440 ks. The morphological and structural changes of the precipitates in the alloy are analyzed by transmission electron microscopic observation. Internal-fringe contrast, which suggests the existence of stacking faults on the {111}γ′ plane, is found in many of the large γ′ precipitates formed in the specimens at the latter stage of aging at temperatures above 1 033 K. The metastable γ′ precipitates, of which some have stacking faults, are gradually transformed into a stable η phase during aging. The effects of stacking faults introduced by cold-rolling into the γ′ particles on the formation of η phase are studied by subsequent annealing heat treatments. The selected-area electron diffraction (SAED) patterns of the cold-rolled and annealed particles show that the metastable γ′ precipitates with stacking faults are transformed intensively into a stable η phase. In this paper, we discuss in detail the basis of these morphological and structural changes of the precipitates in heat-resistant alloys.
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© The Iron and Steel Institute of Japan

This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs license.
https://creativecommons.org/licenses/by-nc-nd/4.0/
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