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In other space specimens we incorporate metal patch inside the laminate beam to see the influence of these patch on the behaviour of the laminates.
Analytical and semi empirical models were evaluated and validated to predict the influence of the geometric parameters on the impact behaviour of the laminates.
Furthermore, due to the mechanisms of strength reduction, it may be expected that curvature would have a significant effect on the behaviour of the laminates.
The fracture behaviour of the laminates and the monoliths was studied, using stable Single Edge V Notched Beam (SEVNB) tests, in terms of work of fracture and the critical stress intensity factor in mode I, KIC.
The two-level strategy relies both on the use of the polar formalism for the description of the anisotropic behaviour of the laminates and on the use of a genetic algorithm as optimisation tool to perform the solution search.
The two-level strategy is founded on the polar formalism for the description of the anisotropic behaviour of the laminates, on the NURBS basis functions for representing the shape of the unit cell and on the use of a genetic algorithm as optimisation tool to perform the solution search.
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Compared to available ply-based approaches; the sub-laminate damage model reduces the computational time significantly while capturing the overall damage behaviour of the laminate.
A consistent experimental programme was carried out to characterize the damage and failure behaviour of the laminate, to validate the simulation results and to provide the necessary experimental input on the unidirectional level.
The numerical results show the behaviour of the laminate during compression, taking into account the damage process evaluated by a progressive damage criterion.
Two models are presented: the tolerance model, which governing equations take into account the effect of the microstructure size on the overall behaviour of these laminates and the asymptotic model, in which equations this effect is omitted.
Especially, the influence of the ultra-thin adhesive films due to the coupling with the viscoelastic core on both dynamic and vibro-acoustic behaviours of the laminate is presented and analyzed.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com