AbstractDental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal reliability with respect to the various loads occurring over years. In this work, enamel’s microstructure of parallel aligned rods of mineral fibers is modeled and mechanical properties are evaluated in terms of strength and toughness with the help of a multiscale modeling method. The established model is validated by comparing it with the stress–strain curves identified by microcantilever beam experiments extracted from these rods. Moreover, in order to gain further insight in the damage-tolerant behavior of enamel, the size of crystallites below which the structure becomes insensitive to flaws is studied by a microstructural finite element ...
In previous studies, enamel showed indications to occlude small cracks in-vivo and exhibited R-curve...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
To accurately solve the fracture parameters of enamel, we have established computational nonhomogene...
Dental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal reliabil...
AbstractDental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal ...
An anisotropic constitutive model is proposed in the framework of finite deformation to capture seve...
Dentition is a vital element of human and animal function, yet there is little fundamental knowledge...
Objective: The purpose of this study was to determine the crack resistance behavior (KR) of human en...
The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a smal...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Abstract Dental enamel is the most mineralised hard tissue with a complex hierarchically organised a...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
AbstractHuman enamel is a typical hierarchical mineralized tissue with a two-level composite structu...
Human teeth consist of enamel, dentine and cementum, hierarchical mineralised tissues with a two-lev...
Human enamel is a typical hierarchical mineralized tissue with a two-level composite structure. To d...
In previous studies, enamel showed indications to occlude small cracks in-vivo and exhibited R-curve...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
To accurately solve the fracture parameters of enamel, we have established computational nonhomogene...
Dental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal reliabil...
AbstractDental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal ...
An anisotropic constitutive model is proposed in the framework of finite deformation to capture seve...
Dentition is a vital element of human and animal function, yet there is little fundamental knowledge...
Objective: The purpose of this study was to determine the crack resistance behavior (KR) of human en...
The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a smal...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Abstract Dental enamel is the most mineralised hard tissue with a complex hierarchically organised a...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
AbstractHuman enamel is a typical hierarchical mineralized tissue with a two-level composite structu...
Human teeth consist of enamel, dentine and cementum, hierarchical mineralised tissues with a two-lev...
Human enamel is a typical hierarchical mineralized tissue with a two-level composite structure. To d...
In previous studies, enamel showed indications to occlude small cracks in-vivo and exhibited R-curve...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
To accurately solve the fracture parameters of enamel, we have established computational nonhomogene...