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ID 67639
タイトル(別表記)
Reverse Shape Memory Effect and Toughness Recovery of Ti-10V-2Fe-3Al Alloy
フルテキストURL
fulltext.pdf 3.22 MB
著者
竹元 嘉利 岡山大学環境生命自然科学学域 Kaken ID publons researchmap
四宮 大輝 岡山大学大学院自然科学研究科
石原 大暉 岡山大学大学院環境生命自然科学研究科
横田 啓人 岡山大学大学院環境生命自然科学研究科
荒川 仁太 岡山大学環境生命自然科学学域
抄録
Ti-10V-2Fe-3Al alloys exhibit shape memory (SM) and reverse shape memory (RSM) effects. When an alloy sample that has been strained by external force at room temperature is heated, the strain recovers and SM effect develops at around 300℃, but as the temperature increases further, the shape changes in the opposite direction due to RSM effect at around 450℃. This RSM effect has potential applications in forming processes such as thin-walled pipes, but has the disadvantage that the RSM treatment makes the material very brittle. Therefore, in this study, a heat treatment to restore toughness while maintaining the shape after forming was investigated. The alloy quenched from 1050℃ had a microstructure consisting of a β matrix phase and α′′-martensite (α′′Mq). Differential scanning calorimetry (DSC) results showed that the continuous heating process occurred in the following order: α′′Mq → β reverse transformation, ω formation, ω disappearance, thermally induced α′′iso phase formation, α precipitation and α → β transformation. Ageing at 300℃, where the SM effect appears, caused significant embrittlement due to the formation of the ageing ω phase. Ageing treatment at 450℃, where the RSM effect is obtained, resulted in the formation of a fine α phase, which also caused significant embrittlement. On the other hand, additional aging at 600℃ for 1.8 ks after RSM treatment significantly improved the toughness and produced material properties comparable to aerospace material specifications. It was found that the embrittlement in the RSM treatment was due to the precipitation of fine α phase, and that the growth of α phase with a width of about 0.2 µm or more was required for toughness recovery. It was also found that the specimen shape formed by the RSM treatment hardly changed after the additional heat treatment of 1.8 ks at 600℃.
キーワード
reverse shape memory
α′′-phase
deformation induced martensite
β-type titanium alloy
brittle fracture
toughness
shape recovery
ω-phase
variant
発行日
2024-10-1
出版物タイトル
日本金属学会誌
88巻
10号
出版者
The Japan Institute of Metals and Materials
開始ページ
239
終了ページ
244
ISSN
0021-4876
NCID
AN00062446
資料タイプ
学術雑誌論文
言語
日本語
OAI-PMH Set
岡山大学
著作権者
© 2024 (公社)日本金属学会
論文のバージョン
publisher
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.2320/jinstmet.j202403
助成機関名
(公財)天田財団
(公財)泉科学技術振興財団
(公財)軽金属奨学会
助成番号
AF–2023021–B3
2023–J–046