Journal of Physics Condensed Matter · 2010 · 235 citations · 46 references
EngineeringMechanical EngineeringContinuum MechanicThermal ProcessesElasticity (Physics)MechanicsVolume ChangeNumerical SimulationThermal AnalysisThermodynamicsElastic Stiffness CoefficientsThermomechanical AnalysisMaterials ScienceFirst-principles ApproachNonlinear ElasticityTemperature Elastic ConstantsSolid MechanicsThermomechanical ProcessingHigh Temperature MaterialsMechanical PropertiesApplied PhysicsThermal EngineeringMechanics Of MaterialsThermal PropertyThermal Properties
A first-principles approach to calculating the elastic stiffness coefficients at finite temperatures was proposed. It is based on the assumption that the temperature dependence of elastic stiffness coefficients mainly results from volume change as a function of temperature; it combines the first-principles calculations of elastic constants at 0 K and the first-principles phonon theory of thermal expansion. Its applications to elastic constants of Al, Cu, Ni, Mo, Ta, NiAl, and Ni₃Al from 0 K up to their respective melting points show excellent agreement between the predicted values and existing experimental measurements.
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