exstream From Epsilon to infinit
REQUEST INFOREQUEST INFO
Home » e-Xstream engineering

e-Xstream engineeringe-Xstream engineering

e-Xstream engineering is a software and engineering services company 100% focused on state-of the-art multi-scale modeling of multi-phase composites materials and structures.
e-xstream develops DIGIMAT, The nonlinear multi-scale material modeling platform that addresses composite material suppliers and end user's needs to design innovative and optimal materials and structures together with reducing the related development time and costs needed to manufacture them.

e-Xstream aims at providing its customers with a complete and optimal modeling solution that suits their specific needs and integrates their existing design processes; from the compounding of the raw material (e.g. engineering plastics, rubbers, CFRP, etc.) to the processing (e.g. injection molding) and application in the final product.

With more than 30 major customers in Europe, USA and Japan, we have added to our deep expertise in numerical simulation the business understanding of a large variety of materials such reinforced plastics, rubber, hard metals and honeycomb sandwich panels used across the automotive, aerospace, consumer and industrial products industries.


DIGIMAT is used to model a large variety of multi-phase materials such as:
  • Polymer Matrix Composites (PMC):
        - Glass Fiber Reinforced Plastics
        - Carbon Fiber Reinforced Plastics
        - Reinforced Rubbers
        - Rubber Alloys
        - Thermoplastic elastomers
  • Metal Matrix Composites (MMC)
        - Hard Metals: CoWC
        - Composite Sandwich panels
        - Honeycomb core
        - Foam Core
  • Carbon Composites
  • Nano-Composites

DIGIMAT is tightly coupled to major CAE software to help OEMs and their suppliers in a variety of industries to develop innovative products using the optimal material :
DIGIMAT interfaces to the major CAE software offer a complete modeling solution that bridges the gap between the production process and end-product performance via the material microstructure



All jobs | Privacy policy | Terms of Use | Sitemap