.. _V6.07.108: **v6.07.108** COMP008 — Thermo-mechanical validation of elasto-plastic laws ============================================================================== **Summary** This test makes it possible to validate the consideration of temperature variation in the laws of elastoplastic behavior. These tests make it possible to verify the following two points: * Thermal expansion is well calculated (taking into account the variation of thermal expansion with temperature) * The variation of the material coefficients with temperature is correct, especially in the incremental resolution of the behavior, The validated laws of behavior are as follows: * Modeling :math:`A`: this modeling makes it possible to validate the ELAS model with an isotropic material * Modeling :math:`B`: this modeling makes it possible to validate the ELAS model with orthotropic material, * Modeling :math:`C`: this modeling makes it possible to validate the model VMIS_ISOT_LINE, * Modeling :math:`D`: this modeling makes it possible to validate the model VMIS_CINE_LINE, * Modeling :math:`E`: this modeling makes it possible to validate the model VENDOCHAB, * Modeling :math:`F`: this modeling makes it possible to validate the model VMIS_ECMI_LINE, * Modeling :math:`G`: this modeling makes it possible to validate the model VMIS_CIN1_CHAB, * Modeling :math:`H`: this modeling makes it possible to validate the model VMIS_CIN2_CHAB, * Modeling :math:`I`: this modeling makes it possible to validate the model VMIS_CIN2_MEMO, * Modeling :math:`J`: this modeling makes it possible to validate the model VISC_CIN1_CHAB, * Modeling :math:`K`: this modeling makes it possible to validate the model VISC_CIN2_CHAB, * Modeling :math:`L`: this modeling makes it possible to validate the model VISC_CIN2_MEMO, * Modeling :math:`M`: this modeling makes it possible to validate the transverse isotropic elasticity, * Modeling :math:`N`: this modeling makes it possible to validate the model ROUSS_PR. * Modeling :math:`O`: this modeling makes it possible to validate the model VMIS_JOHN_COOK. .. toctree:: :hidden: self .. toctree:: :maxdepth: 2 :numbered: M_thodologie Interpr_tation_des_r_sultats Mod_lisation_A Mod_lisation_B Mod_lisation_C Mod_lisation_D Mod_lisation_E Mod_lisation_F Mod_lisation_G Mod_lisation_H Mod_lisation_I Mod_lisation_J Mod_lisation_K Mod_lisation_L Mod_lisation_M Mod_lisation_N Mod_lisation_O Synth_se_g_n_rale_des_r_sultats