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The Microstructure Stability of Precipitation Strengthened Medium to High Entropy Superalloys
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The Microstructure Stability of Precipitation Strengthened Medium to High Entropy Superalloys

Te-Kang Tsao, An-Chou YehHideyuki Murakami
Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 卷.48(5), 頁碼.2435-2442
05/2017

摘要

Condensed Matter Physics Mechanics of Materials Metals and Alloys
Medium and high entropy superalloys based on the Ni-Co-Fe system with strengthening L1 2 γ′ precipitates have been developed. The present study has shown that by controlling the elemental partitioning between γ/γ′, thermal stability of γ′ can be enhanced in the high entropy γ matrix. Most importantly, high entropy superalloys exhibit stable γ–γ′ microstructures with no TCP phases after long-term exposure at elevated temperatures. Therefore, a new alloy design space for stable γ–γ′ microstructure has been presented. Furthermore, due to relatively high content of Fe and Ti, their raw materials cost and alloy density can potentially be lower than those of conventional superalloys.

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