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Composition evolution of gamma prime nanoparticles in the Ti-doped CoFeCrNi high entropy alloy
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Composition evolution of gamma prime nanoparticles in the Ti-doped CoFeCrNi high entropy alloy

Bin Han, Jie Wei, Yang Tong, Da Chen, Yilu Zhao, Jing Wang, Feng He, Tao Yang, Can Zhao, Yasuo Shimizu, …
Scripta Materialia, 卷.148, 頁碼.42-46
04/2018

摘要

Atom probe tomography First-principle calculation High entropy alloy Precipitation Materials Science (all) Condensed Matter Physics
The composition evolution of γ′ nanoparticles as a function of aging duration in the Ti-doped CoFeCrNi high entropy alloy was studied by atom probe tomography (APT) and first-principle calculations. The APT results indicate that the evolution behaviors of Co, Fe, and Cr in the Ni 3 Ti-type γ′ nanoparticles are significantly different. Co saturates to a stable concentration in the γ′ nanoparticles rapidly in the initial stage of the precipitation, whereas Fe and Cr atoms are incorporated into the γ′ nanoparticles during the coarsening. The APT results are supported by the first-principle calculations from the perspective of the electronic state.

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