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Material strain rate effects, a material failure criterion and debonding between the core and the facesheets have not been considered.
The material assigned to the structures is AA6061-O thes the material strain rate sensitivity can be neglected.
Quasi-static experiments were conducted to study material strain rate sensitivity.
The influence of material strain rate sensitivity is evaluated by introducing strain rate dependent material properties representative of type 304 stainless steel.
Regarding the material modelling aspects, the influence of distinct behavioural parameters can be evaluated, such as the ultimate strain in steel and concrete or the potential material strain rate effects on the structural response.
For this choice of material, strain rate sensitivity has a more minor influence than strain hardening, and consequently the dynamic collapse strength of a corrugated core is almost independent of structural dimension.
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The material strain-rate effect is also taken into account by two sub-models.
The finite element calculations also demonstrate that material strain-rate effects have a negligible effect upon the dynamic compressive response of laboratory-scale and full-scale sandwich cores.
Material strain-rate properties and impact loads have been introduced to the numerical simulation in order to investigate impact behaviours of composite slabs subjected to derailment loading in explicit dynamic analysis.
In this study, three-point bending tests were carried out on bovine single trabeculae excised from a proximal femur to test the trabecular material's strain rate sensitivity.
It is well known that structures subjected to dynamic loads do not follow the usual similarity laws when the material is strain rate sensitive.
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