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Dislocation emission from nanovoid with the effect of neighboring nanovoids and surface stresses
Affiliation:State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, PR China;College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, PR China
Abstract:
In the light of the vital mechanism for nanovoid evolution depending strongly on the effect of neighboring nanovoids, a generalized self-consistent model is suggested to describe nanovoid growth by the dislocation emission from nanovoid surface accounting for the effect of neighboring nanovoids and surface stresses in ductile porous materials. The explicit solution of the critical stress for dislocation emission is derived by means of the complex variable method. Analysis shows the advanced model can be implemented as the effective means to address the strong dependence of the nanovoid growth by the dislocation emission upon the size and volume fraction of nanovoid, growth/shrinkage of the neighboring nanovoid, remote applied stress as well as the surface effect.
Keywords:Dislocation emission  Neighboring nanovoid interaction  Volume fraction  Surface stress  Remote applied stress
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