AbstractBone is a multiscale heterogeneous materiel of which principal function is to support the body structure and to resist mechanical loading and fractures. Bone strength does not depend only on the quantity and quality of bone which is characterized by the geometry and the shape of bones but also on the mechanical proprieties of its compounds, which have a significant influence on its deformation and failure. This work aim to use a 3D nano-scale finite element model coupled to the concept of quasi-brittle damage with the behaviour law isotropic elasticity to investigate the fracture behaviour of composite materiel collagen-mineral (mineralized collagen microfibril). Fracture stress-number of cross-links and damping capacity-number of c...
This thesis is a comprehensive study of deformation and failure mechanisms in bone at nano- and micr...
International audienceWe present a multiple scale approach for modeling multiple crack growth in hum...
International audienceWe present a multiple scale method for modeling multiple crack growth in corti...
AbstractBone is a multiscale heterogeneous materiel of which principal function is to support the bo...
Mineralized type-I collagen fibrils are made up of mineral hydroxyapatite and type-I collagen and ar...
International audienceBone is an intriguingly complex material. It combines high strength, toughness...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
AbstractCortical bone contributes to about 80% of the weight of the human skeleton. Along its other ...
Bone possesses a complex hierarchical architecture with characteristic arrangement of material struc...
Objective To study the effects of mineral-collagen interfacial behavior on the microdamage progressi...
Bone-fracture susceptibility is increased by factors such as bone loss, microstructure changes, and ...
The interactions between mineral and collagen phases in the ultrastructural level play an important ...
Bone is an exceptional material that is lightweight for efficient movement but also exhibits excelle...
In this work, a three-dimensional finite element model of the staggered distribution of the mineral ...
AbstractBoth elastic modulus and fracture stress are known to increase with the amount of mineral de...
This thesis is a comprehensive study of deformation and failure mechanisms in bone at nano- and micr...
International audienceWe present a multiple scale approach for modeling multiple crack growth in hum...
International audienceWe present a multiple scale method for modeling multiple crack growth in corti...
AbstractBone is a multiscale heterogeneous materiel of which principal function is to support the bo...
Mineralized type-I collagen fibrils are made up of mineral hydroxyapatite and type-I collagen and ar...
International audienceBone is an intriguingly complex material. It combines high strength, toughness...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
AbstractCortical bone contributes to about 80% of the weight of the human skeleton. Along its other ...
Bone possesses a complex hierarchical architecture with characteristic arrangement of material struc...
Objective To study the effects of mineral-collagen interfacial behavior on the microdamage progressi...
Bone-fracture susceptibility is increased by factors such as bone loss, microstructure changes, and ...
The interactions between mineral and collagen phases in the ultrastructural level play an important ...
Bone is an exceptional material that is lightweight for efficient movement but also exhibits excelle...
In this work, a three-dimensional finite element model of the staggered distribution of the mineral ...
AbstractBoth elastic modulus and fracture stress are known to increase with the amount of mineral de...
This thesis is a comprehensive study of deformation and failure mechanisms in bone at nano- and micr...
International audienceWe present a multiple scale approach for modeling multiple crack growth in hum...
International audienceWe present a multiple scale method for modeling multiple crack growth in corti...