International audienceRoom-temperature plasticity in metallic glasses (MGs) is commonly associated with local structural heterogeneity; however, direct observation of the subtle structural change caused by plasticity is vitally important but the data are extremely scarce. Based on dynamic atomic force microscopy (DAFM), here we show that plasticity-induced structural evolution in a Zr-Ni MG can be revealed via nano-scale viscoelastic contacts between an AFM tip and plastically deformed MG surface layers. Our experimental results clearly show a spatial amplification of the nano-scale structural heterogeneity caused by the distributed plastic flow, which can be linked to the limited growth, reorientation and agglomeration of some nano-scale e...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
We combine non-contact atomic force microscopy (AFM) imaging and AFM indentation in ultra-high vacuu...
A common understanding of plastic deformation of metallic glasses (MGs) at room temperature is that ...
Metallic glasses (MGs) possess remarkably high strength but often display only minimal tensile ducti...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
Metallic glasses possess amorphous structures with inherent heterogeneity at the nanoscale. A combin...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
Although pressured metallic glass (MG) has been reported in the literature; there are few studies fo...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
We combine non-contact atomic force microscopy (AFM) imaging and AFM indentation in ultra-high vacuu...
A common understanding of plastic deformation of metallic glasses (MGs) at room temperature is that ...
Metallic glasses (MGs) possess remarkably high strength but often display only minimal tensile ducti...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
Metallic glasses possess amorphous structures with inherent heterogeneity at the nanoscale. A combin...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
Although pressured metallic glass (MG) has been reported in the literature; there are few studies fo...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...