Chihiro Tabata
(National Institute for Materials Science
)
;
Kyoko Kawagishi
(National Institute for Materials Science
)
;
Tadaharu Yokokawa
(National Institute for Materials Science
)
;
Jun Uzuhashi
(National Institute for Materials Science
)
;
Tadakatsu Ohkubo
(National Institute for Materials Science
)
;
Hiroshi Harada
;
Shinsuke Suzuki
Description:
(abstract)Ni-base superalloys are known for their high temperature oxidation resistance, however,
impurity of S at ppm order can significantly decrease the oxidation resistance of the alloy.
Melting using a CaO crucible is reported to improve the oxidation resistance, but Ca can
negatively impact the oxidation resistance of the alloys, depending on the amount and method
of addition. The objectives of this research were to determine the effect of Ca addition using
Al–Ca alloy, and to understand how Ca affects the oxidation resistance of the alloy. Single
crystal Ni–9.8 wt pct Al model alloys melted in an Al2O3 crucible were cast, with the addition of
20 ppm of S in all samples, and 0, 20, and 100 ppm of Ca using Al–4.9 wt pct Ca alloy. Ca
addition improves the oxidation resistance of the samples, though it lacked in efficiency in the
improvement of this trait compared to when using a CaO crucible. Increasing the amount of Ca
addition led to the increase in the amount of CaS formation and desulfurization, though the
removal of slag is crucial. Although Ca was effective in terms of desulfurization, to limit the
negative effects of Ca itself, the formation of sulfides must be the dominating reaction.
Rights:
Keyword: oxidation resistance, sulfur segregation, Ni-base superalloy
Date published: 2022-12-24
Publisher: Springer Science and Business Media LLC
Journal:
Funding:
Manuscript type: Author's version (Accepted manuscript)
MDR DOI: https://doi.org/10.48505/nims.4237
First published URL: https://doi.org/10.1007/s11661-022-06936-3
Related item:
Other identifier(s):
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Updated at: 2024-01-05 22:12:13 +0900
Published on MDR: 2024-01-11 08:30:16 +0900
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