The Sine Hyperbolic Inverse model is given by:
n = Stress exponent
A = Reciprocal strain factor
Q = Activation energy
R = Universal gas constant
α = Alpha
Workpiece |
Aluminum |
{ |
|
ConstitutiveModel = |
"SineHypInv" |
|
Density = |
ρ |
|
SpecificHeat = |
Cp(T) |
|
Conductivity = |
K(T) |
|
CoeffOfThermalExpansion |
βT |
|
VolumetricHeatSource = |
Qvol |
|
StressExponent = |
n |
|
ActivationEnergy = |
Q |
|
ReferenceTemperature = |
T0 |
|
SolidusTemperature = |
Ts |
|
LiquidusTemperature = |
Tl |
|
ReciprocalStrainFactor = |
A |
|
UniversalGasConstant = |
R |
|
Alpha = |
α |
|
StrainRateOffset = |
ε |
|
YoungModulus = |
E |
|
PoissonRatio = |
ν} |