Understanding and digitally reproducing the behavior of a material under impact in all its complexity: this is our core business and the basis for sizing a structure, to ensure that it is neither oversized nor undersized. The right material just where it is needed…
We establish with the greatest reliability the behavior models of all types of materials in dynamic state: metals, ceramics, polymers, composite materials, concrete, glass, ice, rocks and sands…
Where existing behavior laws in conventional libraries are often insufficient and inadequate, we strive to take into account parameters such as stress triaxiality, strain rate, orthotropy, and phase changes. The goal is to bring our modeling of material behavior as close as possible to what is required by the study being conducted.
We have our own library of behavioral models, established in our shock physics laboratory, for maximum reliability of our numerical simulations.