when designing a porousmaterial, it is important to control not only the porosityand pore morphology, but also the pore spatial positioning,if the mechanical properties, in particular fracturestrength, are to be optimized. To this aim, suitableproduction techniques should be developed in order toguarantee an homogeneous dispersion of pores
Porous glass specimens containing designed spheroidal porosity are used as model materials to test t...
Deformation and fracture of materials are usually considered in terms of brittle and ductile modes. ...
This work provides insight on the prediction of the mechanical behaviour of isotropic porous pure me...
The influence of the types of porous structure on the features of deformation, damage accumulation a...
AbstractThe influence of the types of porous structure on the features of deformation, damage accumu...
The effects of total porosity, average pore size, pore-size distribution and the size and density of...
In this work, porosity-property relationships of quasi-brittle materials are explored through a comb...
Porous glass with closed controlled porosity is used as a model system in order to numerically asses...
A numerical simulation technique called Multi Phase Topology Optimization (MPTO) based on finite ele...
Porous materials consist of interconnected skeletal structure around a porous space. The skeletal st...
Porous materials are commonly found in nature and as industrial materials such as wood, carbon, foam...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
Porous materials are widely used in engineering applications because of their high stiffness, streng...
The finite element method is used to study the influence of porosity and pore shape on the elastic p...
The effect of microscopic material inhomogeneities on the shape optimization of structural parts has...
Porous glass specimens containing designed spheroidal porosity are used as model materials to test t...
Deformation and fracture of materials are usually considered in terms of brittle and ductile modes. ...
This work provides insight on the prediction of the mechanical behaviour of isotropic porous pure me...
The influence of the types of porous structure on the features of deformation, damage accumulation a...
AbstractThe influence of the types of porous structure on the features of deformation, damage accumu...
The effects of total porosity, average pore size, pore-size distribution and the size and density of...
In this work, porosity-property relationships of quasi-brittle materials are explored through a comb...
Porous glass with closed controlled porosity is used as a model system in order to numerically asses...
A numerical simulation technique called Multi Phase Topology Optimization (MPTO) based on finite ele...
Porous materials consist of interconnected skeletal structure around a porous space. The skeletal st...
Porous materials are commonly found in nature and as industrial materials such as wood, carbon, foam...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
Porous materials are widely used in engineering applications because of their high stiffness, streng...
The finite element method is used to study the influence of porosity and pore shape on the elastic p...
The effect of microscopic material inhomogeneities on the shape optimization of structural parts has...
Porous glass specimens containing designed spheroidal porosity are used as model materials to test t...
Deformation and fracture of materials are usually considered in terms of brittle and ductile modes. ...
This work provides insight on the prediction of the mechanical behaviour of isotropic porous pure me...