In mechanical engineering and structural analysis there is a
significant gap between the material models currently used by
engineers for industry applications and those already available in
research laboratories. This is especially apparent with the huge
progress of computational possibilities and the corresponding
dissemination of numerical tools in engineering practice, which
essentially deliver linear solutions. Future improvements of design
and life assessment methods necessarily involve non-linear
solutions for inelastic responses, in plasticity or
viscoplasticity, as well as damage and fracture analyses.
The dissemination of knowledge can be improved by software
developments, data base completion and generalization, but also by
information and training. With such a perspective Non-Linear
Mechanics of Materials proposes a knowledge actualization, in order
to better understand and use recent material constitutive and
damage modeling methods in the context of structural analysis or
multiscale material microstructure computations.
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