A micromechanical model is presented that predicts the stiffness of wood tissues in their three principal anatomical directions, across various hardwood species. The wood polymers cellulose, hemicellulose, and lignin, common to all wood tissues, serve as the starting point. In seven homogenisation steps, the stiffnesses of these polymers are linked to the macroscopic stiffness. The good agreement of model predictions and corresponding experimental data for ten different European and tropical species confirms the functionality and accuracy of the model.<p></p> The model enables investigating the influence of individual microstructural features on the overall stiffness. This is exploited to elucidate the mechanical effects of v...
A model is presented that enables the elastic properties of wood fibers to be estimated from the pro...
The behaviour of wood is hard to predict due to the complex structure of the material. Wood consists...
© 2017 Elsevier Ltd The hierarchical structure of the hardwood balsa (Ochroma pyramidale) is modelle...
A micromechanical model is presented that predicts the stiffness of wood tissues in their three prin...
This contribution covers the development and validation of a microelastic model for wood, based on a...
Wood exhibits a highly diverse microstructure. It appears as a solid-type composite material at a le...
The macroscopic elastic behaviour of wood derives from the mechanical performance of the cells which...
The knowledge about the microstructure and morphology of individual phases also allows an artificial...
Wood is a complex material and the mechanical properties are influencedby a number of structural par...
Wood is a complex organic orthotropic viscoelastic material with acellular structure. When stressed,...
Fungal degradation is among the greatest hazards for standing trees as well as timber constructions....
In order to find an alternative core material to balsa wood in composite sandwich structures, it is ...
Yew (Taxus baccata L.) exhibits among conifers a unique macroscopic elastic behaviour. For example, ...
The hygro-elastic behaviour of wood under load or when subjected to environmental changes is of cons...
International audienceWood is enjoying increasing popularity in the building sector. In order to ful...
A model is presented that enables the elastic properties of wood fibers to be estimated from the pro...
The behaviour of wood is hard to predict due to the complex structure of the material. Wood consists...
© 2017 Elsevier Ltd The hierarchical structure of the hardwood balsa (Ochroma pyramidale) is modelle...
A micromechanical model is presented that predicts the stiffness of wood tissues in their three prin...
This contribution covers the development and validation of a microelastic model for wood, based on a...
Wood exhibits a highly diverse microstructure. It appears as a solid-type composite material at a le...
The macroscopic elastic behaviour of wood derives from the mechanical performance of the cells which...
The knowledge about the microstructure and morphology of individual phases also allows an artificial...
Wood is a complex material and the mechanical properties are influencedby a number of structural par...
Wood is a complex organic orthotropic viscoelastic material with acellular structure. When stressed,...
Fungal degradation is among the greatest hazards for standing trees as well as timber constructions....
In order to find an alternative core material to balsa wood in composite sandwich structures, it is ...
Yew (Taxus baccata L.) exhibits among conifers a unique macroscopic elastic behaviour. For example, ...
The hygro-elastic behaviour of wood under load or when subjected to environmental changes is of cons...
International audienceWood is enjoying increasing popularity in the building sector. In order to ful...
A model is presented that enables the elastic properties of wood fibers to be estimated from the pro...
The behaviour of wood is hard to predict due to the complex structure of the material. Wood consists...
© 2017 Elsevier Ltd The hierarchical structure of the hardwood balsa (Ochroma pyramidale) is modelle...