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doc:user:general:ifields

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doc:user:general:ifields [2015/01/07 15:09] bomandoc:user:general:ifields [2018/08/30 12:56] (current) papeleux
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-====== Internal Fields ======+====== Fields at Gauss Points ======
  
-Fields that are saved for each integration point are referenced by codes with the ''IF'' prefix (standing for **I**nternal **F**ield).+Fields that are computed at each integration point are referenced by codes with the ''IF'' prefix (standing for **I**nternal **F**ield).
  
  
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 | ''IF_DEPL'' | equivalent plastic strain rate |  | ''IF_DEPL'' | equivalent plastic strain rate | 
 | ''IF_EVMS'' | von Mises stress |  | ''IF_EVMS'' | von Mises stress | 
 +| ''IF_CRITERION'' | Plastic Criterion (different to EVMS if VonMises is not used as plastic Critetion) | 
 +| ''IF_YIELD_STRESS'' | yield stress | 
 +| ''IF_VISCOPLAST_STRESS'' | Visco-Plastic Stress | 
 +| ''IF_GRAINSIZE'' | grain size Value | 
 +| ''IF_GRAINSIZE_STRESS'' | grain size Stress | 
 | ''IF_TRIAX'' | stress triaxiality T = hydrostatic stress / equivalent stress |  | ''IF_TRIAX'' | stress triaxiality T = hydrostatic stress / equivalent stress | 
 | ''IF_RUPT_CRIT'' | rupture Criterion | | ''IF_RUPT_CRIT'' | rupture Criterion |
-| ''IF_DYNAMIC_YIELD'' | dynamic yield stress|  
-| ''IF_STATIC_YIELD'' | static yield stress |  
-| ''IF_GRAIN_SIZE'' | grain size |  
 | ''IF_ISO_DAMAGE'' | isotropic damage |  | ''IF_ISO_DAMAGE'' | isotropic damage | 
 | ''IF_DAMAGE_XX'' | orthotropic damage | | ''IF_DAMAGE_XX'' | orthotropic damage |
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 | ''IF_FTOTAL_ZX'' |  :::| | ''IF_FTOTAL_ZX'' |  :::|
 | ''IF_FTOTAL_ZY'' |  :::| | ''IF_FTOTAL_ZY'' |  :::|
 +| ''IF_LODE_PARAMETER'' | Lode parameter $\in [-1,1]$ |
  
 This codes are to be used in [[doc:user:results:courbes_res]] to specify which field must be archived.  This codes are to be used in [[doc:user:results:courbes_res]] to specify which field must be archived. 
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 $$ $$
- \boldsymbol{\sigma}_{cauchy} = \dfrac{\mathbf{F}\,\boldsymbol{\sigma}_{PK2}\,\mathbf{F}^T}{det(\mathbf{F}_{total})}+ \boldsymbol{\sigma}_{\text{cauchy}} = \dfrac{\mathbf{F}\,\boldsymbol{\sigma}_{\text{PK2}}\,\mathbf{F}^T}{\det(\mathbf{F}_{\text{total}})}
 $$ $$
doc/user/general/ifields.1420639764.txt.gz · Last modified: 2016/03/30 15:22 (external edit)

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