Relative influence of cellular morphology and microfibrillar angle on Longitudinal/Tangential elastic anisotropy of softwood tissues. Microfibrillar angle (MFA) influence on elastic anisotropy Longitudinal/Tangential (L/T) of softwood wooden tissues is illustrated through a multi scale modelling. Elastic anisotropy results in the one hand from a geometric effect of cellular morphology and, in the other hand, from double cell wall anisotropy controlled by microfibrillar angle in S2 sub layer. As a result, it is shown here that tissular anisotropy of early wood is mainly governed by the geometry of cellular network, whereas MFA is an essential parameter to explain the latewood tissue anisotropy.L’influence de l’angle des microfibrilles sur le...
This work focuses on a closer examination of the microstructure of wood and the relationship between...
The content of this study is focused on the influence of the structure of wood at microscopic and su...
Nanoindentation is a well known tool for identification of mechanical properties at the micrometer s...
Structural predicting modelling of elastic anisotropic behaviour of gross wood are based on micro ma...
The nanostructure of the wood cell wall and, in particular the tilt angle of the cellulose fibrils v...
A hypothesis for explaining the differential anisotropicshrinkage behavior of wood has been proposed...
Wood is an anisotropic material which exhibits different mechanical properties depending on the dire...
Structural and/or ultrastructural parameters governing the variability inside the tree of the elasti...
The term microfibril angle (MFA) in wood science refers to the angle between the direction of the he...
The term microfibril angle, MFA in wood science refers to the angle between the direction of the hel...
Le bois est un matériau complexe, hétérogène et anisotrope. Ses propriétés mécaniques varient fortem...
A micromechanical model is presented that predicts the stiffness of wood tissues in their three prin...
A three-dimensional analysis of the relationship between the microstructure and the anisotropic elas...
Recent advances in our understanding of the molecular control of secondary cell wall (SCW) formation...
Transverse mechanical properties of wood are important in many practial applications and an interest...
This work focuses on a closer examination of the microstructure of wood and the relationship between...
The content of this study is focused on the influence of the structure of wood at microscopic and su...
Nanoindentation is a well known tool for identification of mechanical properties at the micrometer s...
Structural predicting modelling of elastic anisotropic behaviour of gross wood are based on micro ma...
The nanostructure of the wood cell wall and, in particular the tilt angle of the cellulose fibrils v...
A hypothesis for explaining the differential anisotropicshrinkage behavior of wood has been proposed...
Wood is an anisotropic material which exhibits different mechanical properties depending on the dire...
Structural and/or ultrastructural parameters governing the variability inside the tree of the elasti...
The term microfibril angle (MFA) in wood science refers to the angle between the direction of the he...
The term microfibril angle, MFA in wood science refers to the angle between the direction of the hel...
Le bois est un matériau complexe, hétérogène et anisotrope. Ses propriétés mécaniques varient fortem...
A micromechanical model is presented that predicts the stiffness of wood tissues in their three prin...
A three-dimensional analysis of the relationship between the microstructure and the anisotropic elas...
Recent advances in our understanding of the molecular control of secondary cell wall (SCW) formation...
Transverse mechanical properties of wood are important in many practial applications and an interest...
This work focuses on a closer examination of the microstructure of wood and the relationship between...
The content of this study is focused on the influence of the structure of wood at microscopic and su...
Nanoindentation is a well known tool for identification of mechanical properties at the micrometer s...