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Full Description
The continued development of advanced materials and processes requires an intimate understanding of diffusion mechanisms, and having the ability to model the diffusion-controlled phenomena which occur within materials during processing.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Contents
Growth Kinetics on Nanoscale: Finite Diffusion Permeability of Interfaces
Diffusion Mechanisms in Nanocrystalline and Nanolaminated Au-Cu
Modelling of Oxygen Diffusion and Segregation at Interfaces in Ag-MgO Composites
Stability and Shrinkage by Diffusion in Hollow Nanotubes
A Molecular Dynamics Study of Self-Diffusion in the Core of a Screw Dislocation in Al
A Mathematical Formulation for Interfacial Diffusion, Incorporating Deviation from the Classical Random Walk Theory
First-Principles Computation of Transition-Metal Diffusion Mobility
An Examination of Diffusion Paths in Terms of Interdiffusion Fluxes and Interdiffusion Coefficients
Diffusion in Metallic Melts
Diffusion in Bulk Glass Forming Alloys- from the Glass to the Equilibrium Melt
Non-Random Interaction of Vacancies with Atoms during Interdiffusion and Ionic Conductivity in Materials
Interdiffusion Behavior in γ-Phase U-Mo Alloy versus Al-6061 Alloy Couples Fabricated by Friction Stir Welding
Growth Kinetics of Intermetallic Phases in U-Mo vs. Al Alloy Diffusion Couples Annealed at 550oC
The Influence of Solid State Diffusion on Microstructural Development during Solidification
Calculation of Gas Carburizing Kinetics from Carbon Concentration Profiles based on Direct Flux Integration
Assessment of Ternary Multicomponent Diffusion in Alloy 22 (Ni-Cr-Mo)
Interdiffusion in (fcc) Ni-Cr-X (X = Al, Si, Ge or Pd) Alloys at 700oC
VisiMat©-Educational Tool for Multicomponent Diffusion in 2 and 3 Dimensions



