On the composition and pressure dependence of the self-diffusion coefficient in liquid metals
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Dezsö L. Beke
Abstract
It is shown that a minimum derivation of the recently published unified equation for the temperature dependence of the self-diffusion coefficient in liquid metals can be also obtained from the similarity of interatomic potentials, using dimensional analysis. This relation is extended for the determination of the pressure and composition dependence of the self-diffusion coefficients by the use of pressure and composition dependent scaling parameters (melting point, atomic volume and mass).
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- DGM News
Articles in the same Issue
- Contents
- Contents
- Basic
- The study of recrystallisation and crystallographic texture genesis in industrial steels
- Properties of copper composites strengthened by nano- and micro-sized Al2O3 particles
- High temperature stability of Cr-carbides in an experimental Co–Re-based alloy
- Growth and structure of NdGaO3 films prepared by metal–organic deposition
- On the composition and pressure dependence of the self-diffusion coefficient in liquid metals
- The relationship between the microstructure and the magnetic properties of nano-scale magnetic particles in a Cu–Fe–Co ternary alloy
- The microstructure and magnetic properties of nano-scale Fe magnetic particles precipitated in a Cu–Fe alloy
- The effect of grain size on the corrosion inhibitor adsorption of nanocrystalline iron metal
- Applied
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- The effect of grain refiner and combined electro-magnetic field on grain evolution of horizontal direct chill casting 7075 aluminum alloy
- Luminescence of aqueous reactions derived NiWO4 powders and sol-gel deposited films
- Thermo-mechanical modeling of friction stir welding
- Phase transformation temperatures of pure iron and low alloyed steels in the low temperature region using DTA
- Effect of ECAE conditions on the microstructure, texture and mechanical properties of an extruded Mg–Zn–Y–Zr alloy
- Heat transfer analysis of special reinforced NSC-columns under severe fire conditions
- High-speed milling strategies in mould manufacturing
- Effect of solution heat treatment on the age hardening capacity of dendritic and globular AlSi7Mg0.6 alloys
- Notification
- DGM News