A tribute to F.R.N. Nabarro /
New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals, interphase interfaces, quasicrystals, complex structures with non-planar dislocation cores, and colloidal crystals. A theory for the magnetoplastic effect explains many d...
Call Number: | Libro Electrónico |
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Other Authors: | , |
Format: | Electronic eBook |
Language: | Inglés |
Published: |
Amsterdam ; London :
Elsevier Science,
2008.
|
Series: | Dislocations in solids ;
v. 14. |
Subjects: | |
Online Access: | Texto completo Texto completo |
Table of Contents:
- 1. H. Van Swygenhoven, and P.M. Derlet, Atomistic Simulations of Dislocations in FCC Metallic Nanocystalline Materials
- 2. M.A. Tschopp, D.E. Spearot, and D.L. McDowell, Influence of Grain Boundary Structure on Dislocation Nucleation in FCC Metals
- 3. M.J. Demkowicz, J. Wang, and R.G. Hoagland, Interfaces between Dissimilar Crystalline Solids
- 4. H.M. Zbib, and T.A. Khraishi, Size Effects and Dislocation-Wave Interaction in Dislocation Dynamics
- 5. J. Bonneville, D. Caillard, and P. Guyot, Dislocations and Plasticity of Icosahedral Quasicrystals
- 6. V.I. Alshits, �A.V. Darinskaya, V. oldaeva, and �A.�A. Petrzhik, Magnetoplastic Effect in Nonmagnetic Crystals
- 7. V. Vitek, and V. Paidar, Non-planar Dislocation Cores: A Ubiquitous Phenomenon Affecting Mechanical Properties of Crystalline Materials.