Grain boundary diffusion in additively manufactured CoCrFeMnNi high-entropy alloys: Impact of non-equilibrium state, temperature and relaxation

被引:0
作者
Choi, Nuri [1 ]
Pinto, Manoel da Silva
Yang, Sangsun [2 ]
Yu, Ji Hun
Lee, Jai-Sung [3 ]
Luckabauer, Martin [4 ]
Wilde, Gerhard
Divinski, Sergiy, V [1 ]
机构
[1] Univ Munster, Inst Mat Phys, D-48149 Munster, Germany
[2] Korea Inst Mat Sci, Powder Mat Div, Chang Won 51508, South Korea
[3] Hanyang Univ, Dept Mat Sci & Chem Engn, Ansan 15588, South Korea
[4] Univ Twente, Fac Engn Technol, NL-7522LW Enschede, Netherlands
关键词
Grain boundary diffusion; Grain boundary energy; Non-equilibrium grain boundary; Additive manufacturing; High-entropy alloy; MECHANICAL-PROPERTIES; TRACER DIFFUSION; POINT-DEFECTS; DISLOCATIONS; MICROSTRUCTURE; KINETICS; METALS; STRAIN; SEGREGATION; BEHAVIOR;
D O I
10.1016/j.mtla.2024.102228
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Grain boundary diffusion of Ni in the equiatomic CoCrFeMnNi high-entropy alloy, produced by additive manufacturing, is measured using a radiotracer technique in an extended temperature interval of 350 to 703 K. A strongly non-monotonic temperature dependence of the Ni grain boundary diffusion coefficients (with a spectacular intermittent retardation of the diffusion rates with increasing temperature) is seen and explained by relaxation of a non-equilibrium state induced by rapid solidification during fabrication. The grain boundary excess energy of the non-equilibrium state of these grain boundaries, as estimated from the diffusion data, is found to be larger than 0.3 J/m(2). This corresponds to an increase of about 30% of the interface energy compared to relaxed general high-angle grain boundaries. The temperature-induced evolution of the grain boundary state is analyzed in terms of the concomitant structure evolution, segregation, phase stability and precipitation in the multi-component alloy.
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页数:14
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