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DIGIMAT-MFDIGIMAT-MF

Version 3.1.2 - October 2008
DIGIMAT-MF is the Mean-Field homogenization software used to predict the nonlinear constitutive behavior of multi-phase composite materials.

DIGIMAT-MF is a user-friendly micromechanical material modeling software where the user inputs the material behavior of the phases, the microstructure description and the loading applied to the resulting multi-phase material, guided by a tree data structure.  
Product DescriptionProduct Description
DIGIMAT-MF is the Mean-Field homogenization module of DIGIMAT which offers the capability to define the local material behavior as a function of the material behavior of:

1. the matrix and inclusion phases
2. the composite microstructure morphology (inclusions weight, shape and size)

Key FeaturesKey Features
  • Material Models:
            - Linear Thermo-Elastic
            - Thermo-Elasto-Plastic
            - Cyclic Elasto-Plastic
            - Linear Visco-elastic
            - Elasto-Viscoplastic
            - Hyperelastico Neo-Hookean
  • Homogenization methods:
            - Mori-Tanaka   
            - Interpolative Double Inclusion
  • Loading:
            - Thermo-Mechanical
            - Multi-axial stress or strain
            - Monotonic or Cyclic
            - Imposed or provided from FEA

  • Microstructure morphology:
            - Number of reinforcing phases: N>1
            - Reinforcement shape: ellipsoids of revolution
            - Orientation
            - Void Inclusions
            - Coated inclusions with relative and absolute thickness
            - Rigid or Quasi-rigid inclusions
  • Isotropic extraction methods
  • Failure indicators:
            - Applied at micro (phase) and/or macro (composite) scale
            - Failure models: Max stress/Max strain, Tsai-Hill 2D & 3D,
              Azzi-Tsai-Hill 2D, Tsai-Wu 2D & 3D, Hashin-Rotem 2D, Hashin 2D & 3D

Reference CustomersReference Customers
  • Solvay: "DIGIMAT is a powerful tool that is giving us a new insight into our composite polymers. It's ability to model thermal expansion as a function of temperature, for instance, has been instrumental in understanding some subtle mechanism of warpage of injection molded parts", Vito Leo, Principal Scientist, Solvay Advanced Polymers.

Related Materials and IndustriesRelated Materials and Industries
Sensitivity of composite behavior with respect to fiber content.
Definition of aspect ratio distribution.

Case studiesCase studies

DocumentationDocumentation

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