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A finite element code was developed that implements the inverse approach formulation for the forming analysis.
A 2D finite element code was used for this study, using axisymmetric elements with reduced integration.
The finite element code was verified by comparing simulated results with tensile test results.
The ABAQUS/explicit finite element code was used to carry out numerical simulations.
The ADINA finite element code was applied to simulate the static and dynamic buckling loads of the shells.
A highly parallel finite element code was used, running on two supercomputers, solving the transient incompressible Navier Stokes equations on unstructured meshes.
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ABAQUS finite element code is introduced to simulate temperature and stress fields.
LS-DYNA, a commercial finite element code is chosen as the solver.
Two-dimensional finite element code is developed to predict damage initiation, progression and strength of joints.
A finite element code is developed for structural response analysis of the free and forced vibration.
For the numerical analysis, the finite element code is employed to obtain the domain of combined stability.
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