It is known that structural biological materials such as bone or dentin show unprecedented damage tolerance, toughness, and strength. The common feature of these materials is their hierarchical heterogeneous structure, which contributes to increased energy dissipation before failure occurring at different scale levels. These structural properties are the key to achieve superior nanocomposites. Here, we develop a numerical model in order to simulate the mechanisms involved in damage progression and energy dissipation at different size scales in composites, which depend both on the heterogeneity of the material (defects or reinforcements) and on the type of hierarchical structure. Both these aspects have been incorporated into a 2-D model bas...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Motivated to reveal original mechanisms of failure resistance, we developed a material model that en...
Bone and its substructures have recently been a source of inspiration for the design of novel compos...
Structural hierarchy coupled with material heterogeneity is often identifi ed in natural materials, ...
Interface mechanical problems are of paramount importance in engineering and materials science. Trad...
Defect tolerance, the capacity of a material to maintain strength even under the presence of cracks ...
(2015) A hierarchical lattice spring model to simulate the mechanics of 2-D materials-based composit...
Composites are attractive materials because of their high specific stiffness and specific strength, ...
The brick-mortar bond or interface is often the weakest link in the masonry composites. The localiza...
Biological materials such as spider silk display hierarchical structures, from nano to macro, effect...
The present article deals with micromechanical composite modeling. Both, analytical and computationa...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
This work investigates the potential and the applicability of combining hierarchical and discontinuo...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Motivated to reveal original mechanisms of failure resistance, we developed a material model that en...
Bone and its substructures have recently been a source of inspiration for the design of novel compos...
Structural hierarchy coupled with material heterogeneity is often identifi ed in natural materials, ...
Interface mechanical problems are of paramount importance in engineering and materials science. Trad...
Defect tolerance, the capacity of a material to maintain strength even under the presence of cracks ...
(2015) A hierarchical lattice spring model to simulate the mechanics of 2-D materials-based composit...
Composites are attractive materials because of their high specific stiffness and specific strength, ...
The brick-mortar bond or interface is often the weakest link in the masonry composites. The localiza...
Biological materials such as spider silk display hierarchical structures, from nano to macro, effect...
The present article deals with micromechanical composite modeling. Both, analytical and computationa...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
This work investigates the potential and the applicability of combining hierarchical and discontinuo...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Load-carrying materials in nature, such as wood and bone, consist of relatively simple building bloc...
Motivated to reveal original mechanisms of failure resistance, we developed a material model that en...