Nonlinear theory of the dislocation‐enhanced Snoek effect and its connection with the geometric and/or thermal kink oscillations on nonscrew dislocations in body‐centered‐cubic metals
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.339252
Reference25 articles.
1. The kinetics of hopping motion of interstitials with chemical reactions in arbitrary time dependent inhomogeneous interactive fields
2. Kinetics of hopping of octahedral interstitials in arbitrary time dependent and inhomogeneous field: Body‐centered cubic lattice
3. Internal friction and viscosity associated with mobile interstitials in the presence of a kink harmonically or uniformly moving in anisotropic body‐centered cubic metals
4. Dislocation-enhanced induced Snoek peak associated with heavy interstitials in the presence of kinks moving harmonically in anisotropic body-centered-cubic metals
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1. Irreversible thermodynamics of triple junctions during the intergranular void motion under the electromigration forces;International Journal of Solids and Structures;2005-06
2. Interactive Computer Simulation of Dislocation Damping Spectra Associated with the Coupled Motion of Geometric Kinks and Point Defects Subjected to the Bulk Segregation Phenomenon;Solid State Phenomena;2003-02
3. Simulation of dislocation damping spectra associated with the collective motion of point defects and kink chain subjected to bulk segregation;Journal of Applied Physics;2002-02-15
4. Mathematical modelling of decoration peak associated with dragging point defects situated selectively at the kink chain with special references to hydrogenated BCC and FCC metals;Applied Mathematical Modelling;1997-01
5. The influence of deformation on Snoek peak in Ta-O system;Scripta Materialia;1996-08
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