Structural phase transformations in metallic grain boundaries

被引:0
作者
Timofey Frolov
David L. Olmsted
Mark Asta
Yuri Mishin
机构
[1] University of California,Department of Materials Science and Engineering
[2] School of Physics,undefined
[3] Astronomy and Computational Sciences,undefined
[4] George Mason University,undefined
来源
Nature Communications | / 4卷
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摘要
Structural transformations at interfaces are of profound fundamental interest as complex examples of phase transitions in low-dimensional systems. Despite decades of extensive research, no compelling evidence exists for structural transformations in high-angle grain boundaries in elemental systems. Here we show that the critical impediment to observations of such phase transformations in atomistic modelling has been rooted in inadequate simulation methodology. The proposed new methodology allows variations in atomic density inside the grain boundary and reveals multiple grain boundary phases with different atomic structures. Reversible first-order transformations between such phases are observed by varying temperature or injecting point defects into the boundary region. Owing to the presence of multiple metastable phases, grain boundaries can absorb significant amounts of point defects created inside the material by processes such as irradiation. We propose a novel mechanism of radiation damage healing in metals, which may guide further improvements in radiation resistance of metallic materials through grain boundary engineering.
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共 97 条
[1]  
Mishin Y(2010)Atomistic modeling of interfaces and their impact on microstructure and properties Acta Mater 58 1117-1151
[2]  
Asta M(2011)Nanometer-thick equilibrium films: the interface between thermodynamics and atomistics Science 332 206-209
[3]  
Li J(2011)The phase behavior of interfaces Science 332 182-183
[4]  
Baram M(2011)The role of a bilayer interfacial phase on liquid metal embrittlement Science 333 1730-1733
[5]  
Chatain D(2009)Thermodynamics of grain boundary premelting in alloys. I. Phase field modeling Acta Mater 57 3771-3785
[6]  
Kaplan WD(2011)Dislocation-pairing transitions in hot grain boundaries Phys. Rev. Lett. 106 046101-2890
[7]  
Harmer MP(1987)Atomic structure of symmetrical tilt grain boundaries in NiO Phys. Rev. Lett. 59 2887-626
[8]  
Luo J(2004)Bismuth-induced embrittlement of copper grain boundaries Nat. Mater. 3 621-395
[9]  
Cheng H(2004)Stability of the chevron domain at triple-line reconstructions Phys. Rev. B 69 172102-6453
[10]  
Asl KM(2012)Diffusion and segregation of silver in copper σ5 (310) grain boundary Phys. Rev. B 85 144104-422