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Two-dimensional finite element code is developed to predict damage initiation, progression and strength of joints.
A finite element code is developed to reorient the material polarization distribution according to the poling field calculated.
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For this purpose a finite element code is developed and applied to a couple of verification problems.
A finite element code is developed for structural response analysis of the free and forced vibration.
A finite element code was developed that implements the inverse approach formulation for the forming analysis.
Finite element codes are developed and are then used to analyze both the liquid domain and the structural domain (i.e., the tank and the baffle).
A dedicated finite element computer code is developed to specifically simulate this forming process.
In this study, ANSYS finite element code is used and a systematic approach was developed to carry out the forming analysis at constant strain rate.
In this paper, a general structure of a recently developed object oriented finite element code is presented.
A finite element code was used to perform numerical investigations.
An explicit three-dimensional (3D) finite element (FE) code is developed for the simulation of high velocity impact and fragmentation events.
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