Modeling in a virtual environment in order to detect and solve existing or potential structural performance problems.

 

The method can be applied in the resolution and diagnosis of structural analysis problems to obtain displacements, deformations and stresses, it also allows representing different scenarios and evaluating the performance of products with the application of resistance, stiffness or fatigue criteria. The variations of the finite element method also allow for thermal, acoustic, dynamic, electromagnetic and flow analysis of the simplest cases of linear to non-linear behavior, such as when there are large displacements or contact between the parts of a set.

In this way we can manufacture accurate part models to ensure cost reduction and improved performance, associated with shorter development time and less prototype testing.

The FEM-FEA Analysis performed:

  • Linear statistical analysis
  • Nonlinear statistical analysis
  • Kinematic-dynamic analysis
  • Thermal analysis
  • Acoustic analysis
  • Dynamic analysis
  • Modal analysis
  • Fatigue analysis
  • Buckling analysis
  • Geometric optimization analysis
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