Dislocation line kinetics as affected by high‐temperature pulse irradiations
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1662390
Reference14 articles.
1. Diffusional Properties of the Stage‐III Defect in Copper. I. Experimental Results
2. Diffusional Properties of the Stage‐III Defect in Copper. II. A Model for Defect‐Dislocation Interactions
3. Diffusional Properties of the Stage‐III Defect in Copper. III. Bulk Diffusion
4. Point‐Defect Pinning of Dislocations during Initial Period of Continuous Low‐Level Gamma Irradiation: Application to Stage III in Copper
5. Application of Dislocation Theory to Internal Friction Phenomena at High Frequencies
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1. 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
2. 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
3. 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
4. Exact analytical solution of the internal friction associated with a geometric kink chain oscillating in an atmosphere of paraelastic interstitials and decorated by a dragging point defect;Physical Review B;1989-08-15
5. The flux, temperature, and energy-dependence of dissociation pinning in electron-irradiated gold;Journal of Physics: Condensed Matter;1989-07-17
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