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All simulations were performed using the ABAQUS finite element code.
Theoretical analyses are carried out using ABAQUS finite element code.
These simulations were achieved using ABAQUS explicit finite element code.
Stress analysis is done using finite element code ABAQUS.
The model is implemented into commercial finite element code ABAQUS.
The strength reduction method for barodesy has been implemented in the Finite Element code Abaqus.
The residual-stress dependent nonlinear elastic constitutive law is implemented in a finite element code.
These sub-models are implemented in ABAQUS commercial finite element code using user subroutines.
The ITERTHA code results are verified by the commercial finite element code, COSMOS.
For this, an incremental micromechanics algorithm was implemented into a finite element code.
A finite element code ALGOR was used to couple the thermal profiles with structural design.
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