The Sine Hyperbolic Inverse model is given by:
 
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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}  |