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In-situ neutron diffraction studies on high-temperature deformation behavior in a CoCrFeMnNi high entropy alloy
Journal article   Peer reviewed

In-situ neutron diffraction studies on high-temperature deformation behavior in a CoCrFeMnNi high entropy alloy

Wanchuck Woo, E-Wen Huang, Jien-Wei Yeh, Hahn Choo, Chi Lee and Shan-Yi Tu
Intermetallics, Vol.62, pp.1-6
2015

Abstract

A. High-entropy alloys B. Creep D. Microstructure E. Multiscale F. Diffraction/scattering
Abstract An equiatomic, face-centered-cubic, CoCrFeMnNi high-entropy alloy was tensile tested at 800 K and 1,000 K with a nominal strain rate of 6.7 × 10 -6 s -1 . In addition to the macroscopic (bulk) behavior, mesoscopic (lattice) phenomena during the pseudo-creep deformation were investigated simultaneously using in-situ neutron diffraction. The evolutions of lattice strains, peak widths, and intensities of several hkl reflections suggest that the dominant deformation mode is the dislocation glide at 800 K and diffusion-controlled dislocation creep at 1,000 K.

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