Title of article :
Temperature dependence of Self-diffusion coefficient (SDC) of liquid aluminum using Embedded Atom Method-Finnis-Sinclair (EAMFS) Potential
Author/Authors :
nenuwe, on federal university of petroleum resources - department of physics, Effurun, Nigeria , osafile, oe federal university of petroleum resources - department of physics, Effurun, Nigeria
From page :
519
To page :
523
Abstract :
Atomistix tool kit force field calculations have been done, using the embedded atom method-FinnisSinclair potential as implemented in Virtual Nano Lab-Atomistix Tool Kit (VNL-ATK) to study the temperature dependence of self-diffusion coefficient of liquid aluminum. Also, we calculated the shear viscosity from the SutherlandEinstein relation, and reports that, the calculated SDC and viscosity are sensitive to temperature. Results obtained at 980, 1020 and 1060K for SDC underestimated available experimental results, while the calculated results for viscosity at 1000 and 1200K overestimated experimental data available in the literature. The underestimation might be due to the shortrange order in liquid Al.
Keywords :
self , diffusion , viscosity , aluminum , temperature
Journal title :
Journal of Applied Sciences and Environmental Management
Journal title :
Journal of Applied Sciences and Environmental Management
Record number :
2591304
Link To Document :
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