2 Days workshop on Hyper-elastic Material Modeling – Theory and Simulation

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About Course

About the Workshop

For many ideally elastic materials, linear elastic models as per the Hook’s law predicts the linear material behavior.

Most common example of such kind of material is rubber, whose consecutive relationship are defined by nonlinear elastic, isotropic, incompressible, and independent of strain rate. Hyper-Elasticity is the study of material behavior which do not obeys the Hook’s law and behaves nonlinearly within elastic limit and provides constitutive relation between the stress-strain from strain energy density function. Thus, hyper-elastic idealization models are widely adopted in the industrial products which are manufactured using elastomers.

The Workshop is composed of both theory and practical’s using commercial software

What Will You Learn?

  • Fundamental Understanding of Polymeric Materials
  • FEM Modeling of Polymeric Materials
  • Understanding of Hyperelastic Material Models
  • Fatigue Evaluation of Hyperelastic Material Models
  • Fracture Aspects of Hyperelastic Material Models
  • Hyperelastic material testing
  • Hyperelastic material simulations for various industrial applications

Course Content

Introduction to Polymers /Elastomers

Multiscale Material Modeling and Material Characterisation

Mechanical Behaviour of Elastomers

Hyper-Elastic Material Model for FEM

Introduction to Finite Element Method:

Fatigue of Hyper-elastic Materials

Fracture of Hyper-elastic Materials

Testing Methods for Hyper-elastic material

Numerical Challenges and Problems to Solve

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