Difference between revisions of "Isotropic Phase Field Softening Material"
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== Constitutive Law == | == Constitutive Law == | ||
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== Material Properties == | == Material Properties == | ||
The isotropic variational mechanics model using a single energy release rate that scales evolution of damage. The critical energy release rate is enter using the base material | The isotropic variational mechanics model using a single energy release rate that scales evolution of damage. The critical energy release rate is enter using the base material [[Common Material Properties#Fracture Toughness Properties|JIc property]]. The other needed material properties are as follows: | ||
{| class="wikitable" | {| class="wikitable" |
Revision as of 14:34, 14 March 2022
Constitutive Law
This material is underdevelopment and only available in OSParticulas
Material Properties
The isotropic variational mechanics model using a single energy release rate that scales evolution of damage. The critical energy release rate is enter using the base material JIc property. The other needed material properties are as follows:
Property | Description | Units | Default |
---|---|---|---|
(Isotropic Properties) | Enter all properties needed to define the underlying isotropic material response | varies | varies |
ell | Length scale parameter used in variational fracture mechanics | none | none |
viscosity | Viscosity to use when solving coupled phase field evolution in a diffusion tasks | none | none |
gd | Softening law with options 0 = quadratic, 1 = exponential, 2 = linear softening | none | 0 |
stability | A stability factor thought to help post-failure analysis | none | 0 |
garg | An optional argument for use within the softening law. If not provided, default values depend on gd and are 1, 3, and 4, for gd = 0, 1, or 2, respectively | none | varies |
partition | Choose the methods used to partition energy into energy that cause fracture and energy that does not cause fracture. The options are 0 = using eigenstrain analysis and 1 = divide into pressure and deviatoric strains | none | 1 |
(other) | Properties common to all materials | varies | varies |