2. Laws of behavior#

2.1. Generalities#

[R5.03.27] Mechanical behaviors for numerical simulations

2.2. Discreet elements and beams#

[R5.03.09] 1D nonlinear behavioral relationships

[R5.03.17] Behavioral relationships of discrete elements

2.3. Thermo-elasticity#

[R4.01.02] Anisotropic elasticity

[R4.08.01] Calculation of thermal deformation

[R5.03.19] Hyperelastic law of behavior: almost incompressible material

[R5.03.20] Nonlinear elastic behavior relationship in large displacements

2.4. Incremental elastoplasticity#

[R5.03.16] Elastoplastic behavior with isotropic and linear kinematics mixed work hardening

2.5. Elastoviscoplasticity under irradiation#

[R5.03.23] Elastoplastic behavior under metal irradiation: application to tank internals

2.6. Behaviour of polycrystalline metals#

[R5.03.11] Mono and polycrystalline elastoviscoplastic behaviors

2.7. Geo-materials and porous media#

[R7.01.11] Behaviour models THHM

[R7.01.13] Law CJS in geomechanics

[R7.01.14] Law of behavior CAM_CLAY

[R7.01.15] LAIGLE law of behavior

[R7.01.16] Integration of Drucker-Prager DRUCK_PRAGER and DRUCK_PRAG_N_A behaviors and post-treatments

[R7.01.17] Law of behavior of porous media: BARCELONE model

[R7.01.18] HOEK_BROWN Behaviour Law amended

[R7.01.22] Law of viscoplastic behavior VISC_DRUC_PRAG

[R7.01.23] Hujeux law of cyclical behavior for soils

[R7.01.24] Law of viscoplastic behavior LETK

[R7.01.28] Mohr-Coulomb law

[R7.01.38] Iwan’s law for the cyclic behavior of granular materials

[R7.01.39] Rankine’s law

[R7.01.40] Behaviour model LKR

2.8. Behaviour of concrete#

[R7.01.01] Behavioral relationship BETON_GRANGER for the clean creep of concrete

[R7.01.03] Dual-criteria Drücker Prager law of behavior BETON_DOUBLE_DP for concrete cracking and compression

[R7.01.04] Law of behavior ENDO_ISOT_BETON

[R7.01.06] BETON_UMLV behavior relationship for concrete creep

[R7.01.08] MAZARS damage model

[R7.01.09] Law of behavior ENDO_ORTH_BETON

[R7.01.12] Modeling thermohydration, drying, and concrete shrinkage

[R7.01.19] Modeling the creep/plasticity coupling for concrete

[R7.01.26] Law of behavior BETON_RAG

[R7.01.27] Law of behavior BETON_REGLE_PR

[R7.01.31] Law of behavior of reinforced concrete plates GLRC_DAMAGE

[R7.01.32] Law of behavior GLRC_DM

[R7.01.35] BETON_BURGER behavior relationship for concrete creep

[R7.01.36] Behavioral relationship KIT_RGI

[R7.01.37] Dissipative Homogenised Reinforced Concrete (DHRC) constitutive model devoted to reinforced concrete plates

2.9. Behaviour of reinforcements in reinforced concrete structures#

[R3.08.10] Item CABLE_GAINE

[R7.01.20] Behaviour of steel subject to corrosion

[R7.01.21] Behavioral law (in 2D) for the steel-concrete bond: JOINT_BA

2.10. Damaging#

[R5.03.25] Regularized damage law ENDO_SCALAIRE

[R5.03.26] Quadratic regularized damage law ENDO_CARRE

[R5.03.28] Gradient damage law ENDO_FISS_EXP

[R5.04.01] Non-local modeling with a gradient of internal variables

[R5.04.03] Second gradient modeling

[R5.04.04] Nonlocal modeling with nodal damage gradients GVNO

[R7.01.29] Law of behavior ENDO_HETEROGENE

[R7.01.33] Elasto-plasticity-damage coupling

2.11. Metallurgical models#

[R4.04.01] Models of metallurgical behavior of steels

[R4.04.02] Elasto (visco) plastic modeling taking into account metallurgical transformations

[R4.04.03] Law of elasto (visco) plastic behavior in large deformations with metallurgical transformations

[R4.04.04] Metallurgical behavior models of zircaloy

[R4.04.05] META_LEMA_ANI elastoviscous behavior model including metallurgy for fuel rod sheath tubes

2.12. Viscoelasticity#

[R5.03.08] Integration of viscoelastic behavior relationships

[R5.05.10] Dynamic analysis of structures with viscoelastic materials having frequency dependent properties

2.13. Elastoviscoplasticity of metals#

[R5.03.02] Integration of Von Mises elasto-plastic behavior relationships

[R5.03.04] Chaboche elasto-visco-plastic behavioral relationships

[R5.03.05] Viscoplastic behavior relationship TAHERI

[R5.03.06] Rousselier model in large deformations

[R5.03.07] Rousselier model for ductile rupture

[R5.03.12] Viscoplastic behavior with memory effect and Chaboche restoration

[R5.03.13] Viscoplastic behavior with damage to HAYHURST

[R5.03.15] Viscoplastic behavior with Chaboche damage

[R5.03.32] Law of assembly behavior ASSE_CORN

2.14. Cohesive and joint laws#

[R3.06.09] Mechanical joint finite elements and hydromechanical coupled joint finite elements

[R7.01.25] Laws of behavior of dam joints: JOINT_MECA_RUPT and JOINT_MECA_FROT

[R7.02.11] Cohesive behavior laws CZM and load control