Report 高圧ディスク用新規Ni-Co 基超合金の開発
長田 俊郎 (author) (Search by this author)
ORCID https://orcid.org/0000-0003-1539-9264
構造材料研究センター/材料創製分野/高信頼性耐熱材料グループ, 物質・材料研究機構
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ORCID SAMURAI ;
大澤 真人 (author) (Search by this author)
構造材料研究センター/材料創製分野/超耐熱材料グループ, 物質・材料研究機構
;
森 雄飛 (author) (Search by this author)
構造材料研究拠点/設計・創造分野/超耐熱材料グループ, 物質・材料研究機構
;
池田 亜矢子 (author) (Search by this author)
ORCID https://orcid.org/0000-0002-1705-9004
構造材料研究センター/材料創製分野/超耐熱材料グループ, 物質・材料研究機構
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原田 広史 (author) (Search by this author)
人材部門, 物質・材料研究機構
;
小幡 卓眞 (author) (Search by this author)
構造材料研究センター/材料創製分野/超耐熱材料グループ, 物質・材料研究機構
;
川岸 京子 (author) (Search by this author)
ORCID https://orcid.org/0000-0001-7652-9232
構造材料研究センター/材料創製分野/超耐熱材料グループ, 物質・材料研究機構
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Citation
長田 俊郎, 大澤 真人, 森 雄飛, 池田 亜矢子, 原田 広史, 小幡 卓眞, 川岸 京子. 高圧ディスク用新規Ni-Co 基超合金の開発. https://doi.org/10.48505/nims.5209
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Alternative title: Development of novel Ni-Co base superalloy for HP disk applications

Description:

(abstract)

Aiming to further improve the temperature capability of superalloys for high-pressure disks of aircraft engines, we developed a new Ni-Co base superalloys by redesigning based on a combination of turbine blade superalloy, TM-47, with a Co-C3Ti alloy, both of which possess a γ-γʹ two-phase structure. As a result of investigations using single crystal model alloys and powder metallurgy processed alloys, it was confirmed that the addition of Co-12.5 wt.% Ti to TM-47 improves creep properties, powder manufacturability, phase stability, and high-temperature strength. In particular, it was demonstrated that TM-47 M2 (20 wt.% of Co-12.5 wt.% Ti added to TM-47) exhibits superior 0.2% creep properties compared to conventional materials.

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Keyword: HPディスク, Ni-Co基超合金, 粉末冶金, 高温強度, クリープ

Date published: 2024-10-23

Publisher: 公益社団法人 日本ガスタービン学会

Journal:

Funding:

  • 安全保障技術研究推進制度 JPJ004596

Manuscript type: Author's version (Accepted manuscript)

MDR DOI: https://doi.org/10.48505/nims.5209

First published URL: https://www.gtsj.or.jp/html_calender/teiki52-takamatu.html

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Updated at: 2024-12-24 13:58:55 +0900

Published on MDR: 2024-12-24 13:58:55 +0900

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