doc:user:elements:volumes:iso_hypo_materials
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doc:user:elements:volumes:iso_hypo_materials [2015/07/14 15:19] – [KelvinVoigtViscoElastHypoMaterial] papeleux | doc:user:elements:volumes:iso_hypo_materials [2022/07/14 12:41] (current) – papeleux | ||
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Line 17: | Line 17: | ||
| Young' | | Young' | ||
| Poisson Ratio | '' | | Poisson Ratio | '' | ||
+ | | Material Stiffness | ||
| Objectivity Method \\ (Jaumann = 0, GreenNaghdi = 1) | '' | | Objectivity Method \\ (Jaumann = 0, GreenNaghdi = 1) | '' | ||
| Orthotropic axis | | Orthotropic axis | ||
Line 37: | Line 38: | ||
| Young' | | Young' | ||
| Poisson ratio | '' | | Poisson ratio | '' | ||
+ | | Material Stiffness | ||
| Objectivity method \\ (Jaumann = 0, GreenNaghdi = 1) | | Objectivity method \\ (Jaumann = 0, GreenNaghdi = 1) | ||
| Orthotropic axis | '' | | Orthotropic axis | '' | ||
Line 64: | Line 66: | ||
\begin{cases} | \begin{cases} | ||
p^{1} = p^{0} + 3K {\Delta\epsilon}_{ii} \\ | p^{1} = p^{0} + 3K {\Delta\epsilon}_{ii} \\ | ||
- | s^{1}_{ij} | + | s^{1}_{ij} |
\end{cases} | \end{cases} | ||
$$ | $$ | ||
Line 78: | Line 80: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
+ | | Material Stiffness | ||
| Viscosity coefficient | | Viscosity coefficient | ||
Line 86: | Line 89: | ||
The GeneralizedMaxwell viscoelastic model result in adding of up to now, maximum 2 visco-elastic Maxwell branches to the elastic material. The similar spring/ | The GeneralizedMaxwell viscoelastic model result in adding of up to now, maximum 2 visco-elastic Maxwell branches to the elastic material. The similar spring/ | ||
- | {{ : | + | {{ : |
- | The effect of viscosity is only impacting deviatoric stresses | + | Defining Maxwell viscous parameters from materials data (for each Maxwell branch): |
- | (all computations done on a finite time step Δt) | + | |
$$ | $$ | ||
\begin{cases} | \begin{cases} | ||
- | p^{1} = p^{0} + 3K {\Delta\epsilon}_{ii} \\ | + | \Gamma_{i} &= \frac{\mu_{i}} {2G}\\ |
- | s^{1}_{ij} | + | \tau_{i} & |
\end{cases} | \end{cases} | ||
$$ | $$ | ||
+ | The stresses in each Maxwell branch consist in 2 effects : | ||
+ | - the relaxation of previous time step stresses in this Maxwell branch | ||
+ | - the stress modification due to strain increment Δϵij | ||
- | where K and G are compressibility and shear modulus. | ||
+ | $$ | ||
+ | \begin{cases} | ||
+ | p^{1} &= p^{0} + 3K {\Delta\epsilon}_{ii} \\ | ||
+ | \underline{s}^{1} | ||
+ | \end{cases} | ||
+ | $$ | ||
+ | Stresses in each branch are computed using : | ||
+ | $$ | ||
+ | \begin{cases} | ||
+ | \underline{s}_{E}^{1} | ||
+ | \underline{s}^{1}_{M1} &= e^{(\frac{-\Delta t}{\tau_{1}})} \underline{s}^{0}_{M1} + \Gamma_{1} (1-e^{\frac{-\Delta t}{\tau_{1}}}) \frac{\tau_{1}}{\Delta t} 2G {\Delta\hat{\underline{\epsilon}}} \\ | ||
+ | \underline{s}^{1}_{M2} &= e^{(\frac{-\Delta t}{\tau_{2}})} \underline{s}^{0}_{M2} + \Gamma_{2} (1-e^{\frac{-\Delta t}{\tau_{2}}}) \frac{\tau_{2}}{\Delta t} 2G {\Delta\hat{\underline{\epsilon}}} \\ | ||
+ | \end{cases} | ||
+ | $$ | ||
- | === Parameters === | + | where K and G are compressibility and shear modulus, Δϵ_ is the stain increment during the time step Δt. |
+ | these equations shown clearly the necessity to track history of the total stresses but also to each Maxwell branch stresses s_1M1 and s_1M2. | ||
- | nbMaxwellBranch | + | === Parameters === |
- | if (nbMaxwellBranch != 1 && nbMaxwellBranch != 2) | + | |
- | | + | |
- | } | + | |
- | + | ||
- | if(!exist(VISCO_ETA1)) | + | |
- | FATAL_ERROR(" | + | |
- | if(!exist(VISCO_MU1)) | + | |
- | FATAL_ERROR(" | + | |
- | + | ||
- | if (nbMaxwellBranch | + | |
- | { | + | |
- | if(!exist(VISCO_ETA2)) | + | |
- | FATAL_ERROR(" | + | |
- | if(!exist(VISCO_MU2)) | + | |
- | | + | |
^ | ^ | ||
Line 126: | Line 131: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
- | | number | + | | Material Stiffness |
- | | Maxwel 1 Stiffness | + | | Number |
- | | Maxwel 1 Viscosity | + | | Maxwel 1 Stiffness |
- | | Maxwel 2 Stiffness | + | | Maxwel 1 Viscosity |
- | | Maxwel 2 Viscosity | + | | Maxwel 2 Stiffness |
+ | | Maxwel 2 Viscosity | ||
- | model implemented based on | + | model implemented based on {{: |
- | " | + | Rothert |
- | Formulation and Implementation | + | |
- | Computational | + | |
===== EvpIsoHHypoMaterial ===== | ===== EvpIsoHHypoMaterial ===== | ||
Line 158: | Line 162: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
+ | | Material Stiffness | ||
| Thermal Expansion | | Thermal Expansion | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
Line 203: | Line 208: | ||
| Young' | | Young' | ||
| Poisson Ratio | '' | | Poisson Ratio | '' | ||
+ | | Material Stiffness | ||
| Thermal expansion | | Thermal expansion | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
Line 236: | Line 242: | ||
| Young' | | Young' | ||
| Poisson Ratio | '' | | Poisson Ratio | '' | ||
+ | | Material Stiffness | ||
| Thermal expansion | | Thermal expansion | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
Line 269: | Line 276: | ||
| Young' | | Young' | ||
| Poisson Ratio | '' | | Poisson Ratio | '' | ||
+ | | Material Stiffness | ||
| Thermal Expansion | | Thermal Expansion | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
Line 308: | Line 316: | ||
| Young' | | Young' | ||
| Poisson Ratio | '' | | Poisson Ratio | '' | ||
+ | | Material Stiffness | ||
| Number of the material law which defines the yield stress σyield | '' | | Number of the material law which defines the yield stress σyield | '' | ||
| Number of the damage evolution law | '' | | Number of the damage evolution law | '' | ||
Line 350: | Line 359: | ||
$$ | $$ | ||
- | f=\dfrac{\overline{\sigma}}{1-D}-\sigma_{yield}=0 | + | f=\dfrac{\overline{\sigma}}{1-h\cdot |
$$ | $$ | ||
- | where ¯σ is the equivalent stress computed as a function of [[doc: | + | where ¯σ is the equivalent stress computed as a function of [[doc: |
+ | $$ | ||
+ | h = \left\{ | ||
+ | | ||
+ | \text{DAMAGE_MCCE} & | ||
+ | 1.0 & | ||
+ | | ||
+ | | ||
+ | $$ | ||
The evolution law coupled with plasticity can be integrated three ways depending on the parameter '' | The evolution law coupled with plasticity can be integrated three ways depending on the parameter '' | ||
Line 367: | Line 384: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
+ | | Material Stiffness | ||
| Number of the material law which defines the yield stress σyield | '' | | Number of the material law which defines the yield stress σyield | '' | ||
| Number of the damage evolution law | '' | | Number of the damage evolution law | '' | ||
| Initial damage | | Initial damage | ||
| Integration method | | Integration method | ||
+ | | Micro-Crack Closure Effect parameter (=1.0 by default) | ||
===== ContinuousAnisoDamageEvpIsoHHypoMaterial ===== | ===== ContinuousAnisoDamageEvpIsoHHypoMaterial ===== | ||
Line 401: | Line 420: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
+ | | Material Stiffness | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
| Number of the damage evolution law | '' | | Number of the damage evolution law | '' | ||
Line 427: | Line 447: | ||
| Young' | | Young' | ||
| Poisson Ratio | | Poisson Ratio | ||
+ | | Material Stiffness | ||
| Number of the material law which defines the yield stress σyield | | Number of the material law which defines the yield stress σyield | ||
| Number of the damage evolution law | '' | | Number of the damage evolution law | '' |
doc/user/elements/volumes/iso_hypo_materials.1436879987.txt.gz · Last modified: 2016/03/30 15:22 (external edit)