Porous bulk metallic glasses ( BMGs) exhibit an excellent combination of superior mechanical properties such as high strength, high resilience, large malleability, and energy absorption capacity. However, a mechanistic understanding of their response under diverse states of stress encountered in practical load-bearing applications is lacking in the literature. In this work, this gap is addressed by performing three-dimensional finite element simulations of porous BMGs subjected to a wide range of tensile and compressive states of stress. A unit cell approach is adopted to investigate the mechanical behavior of a porous BMG having 3% porosity. A parametric study of the effect of stress triaxialities T=0, +/- 1/3, +/- 1, +/- 2, +/- 3, and +/-...
The macroscopic behaviour of anisotropic porous solids made from an aggregate of spherical voids emb...
AbstractWe investigate the influence of various critical structural aspects such as pore density, di...
International audienceAn elastoviscoplastic model is formulated at finite strains for porous single ...
Bulk metallic glasses (BMGs) are a new class of engineering materials having strengths as high as 10...
The role of porous structure and glass density in response to compressive deformation of amorphous m...
Porous glass with closed controlled porosity is used as a model system in order to numerically asses...
The intrinsic properties of advanced alloy systems can be altered by changing their microstructural ...
The effects of nanoscale pores on the strength and ductility of porous Cu46Zr54 metallic glasses dur...
The evolution of porous structure and mechanical properties of binary glasses under tensile loading ...
In this study, the deformation mechanisms of bulk metallic glass (BMG) foam with around 49% porosity...
Systematization of material parameters is essential for property optimization. In this work, a gradi...
The existing fracture criteria for bulk metallic glasses (BMGs) are described by the stress state on...
We investigate the influence of various critical structural aspects such as pore density, distributi...
Porous shape memory alloys are a class of very interesting materials exhibiting features typical of ...
In this work, the deformation behavior of a Zr-based bulk metallic glass specimen under a tailored c...
The macroscopic behaviour of anisotropic porous solids made from an aggregate of spherical voids emb...
AbstractWe investigate the influence of various critical structural aspects such as pore density, di...
International audienceAn elastoviscoplastic model is formulated at finite strains for porous single ...
Bulk metallic glasses (BMGs) are a new class of engineering materials having strengths as high as 10...
The role of porous structure and glass density in response to compressive deformation of amorphous m...
Porous glass with closed controlled porosity is used as a model system in order to numerically asses...
The intrinsic properties of advanced alloy systems can be altered by changing their microstructural ...
The effects of nanoscale pores on the strength and ductility of porous Cu46Zr54 metallic glasses dur...
The evolution of porous structure and mechanical properties of binary glasses under tensile loading ...
In this study, the deformation mechanisms of bulk metallic glass (BMG) foam with around 49% porosity...
Systematization of material parameters is essential for property optimization. In this work, a gradi...
The existing fracture criteria for bulk metallic glasses (BMGs) are described by the stress state on...
We investigate the influence of various critical structural aspects such as pore density, distributi...
Porous shape memory alloys are a class of very interesting materials exhibiting features typical of ...
In this work, the deformation behavior of a Zr-based bulk metallic glass specimen under a tailored c...
The macroscopic behaviour of anisotropic porous solids made from an aggregate of spherical voids emb...
AbstractWe investigate the influence of various critical structural aspects such as pore density, di...
International audienceAn elastoviscoplastic model is formulated at finite strains for porous single ...