The emergence of size-dependent mechanical strength in nanosized materials is now well-established, but no fundamental understanding of fracture toughness or flaw sensitivity in nanostructures exists. We report the fabrication and in situ fracture testing of ∼70 nm diameter Ni–P metallic glass samples with a structural flaw. Failure occurs at the structural flaw in all cases, and the failure strength of flawed samples was reduced by 40% compared to unflawed samples. We explore deformation and failure mechanisms in a similar nanometallic glass via molecular dynamics simulations, which corroborate sensitivity to flaws and reveal that the structural flaw shifts the failure mechanism from shear banding to cavitation. We find that failure streng...
Significant progress in understanding the mechanical behavior of metallic glasses (MGs) was made ove...
Amorphous alloys possess attractive combinations of mechanical properties (high elastic limit, ~2%, ...
Amorphous alloys (also referred to as metallic glasses) demonstrate superior mechanical strength, el...
The emergence of size-dependent mechanical strength in nanosized materials is now well-established, ...
Experiments show an intriguing brittle-to-ductile transition on size reduction on nanoscale metallic...
In this work, numerical simulations using molecular dynamics and non-local plasticity based finite e...
When reducing the size of metallic glass samples down to the nanoscale regime, experimental studies ...
We perform atomistic simulations on the fracture behavior of two typical metallic glasses, one britt...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
Recent experiments have shown that nano-sized metallic glass (MG) specimens subjected to tensile loa...
We investigate the influence of various microstructural features on the deformation behavior of bina...
Micro-cantilever bending tests are performed to quantify the fracture toughness and reveal the defor...
4 pages, 4 figures, few minor corrections, Fig. 1b changedWe report in situ Atomic Force Microscopy ...
Recent experimental studies have revealed nanoscale cavities and periodic corrugations on the fractu...
The mechanical properties of amorphous alloys have proven both scientifically unique and of potentia...
Significant progress in understanding the mechanical behavior of metallic glasses (MGs) was made ove...
Amorphous alloys possess attractive combinations of mechanical properties (high elastic limit, ~2%, ...
Amorphous alloys (also referred to as metallic glasses) demonstrate superior mechanical strength, el...
The emergence of size-dependent mechanical strength in nanosized materials is now well-established, ...
Experiments show an intriguing brittle-to-ductile transition on size reduction on nanoscale metallic...
In this work, numerical simulations using molecular dynamics and non-local plasticity based finite e...
When reducing the size of metallic glass samples down to the nanoscale regime, experimental studies ...
We perform atomistic simulations on the fracture behavior of two typical metallic glasses, one britt...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
Recent experiments have shown that nano-sized metallic glass (MG) specimens subjected to tensile loa...
We investigate the influence of various microstructural features on the deformation behavior of bina...
Micro-cantilever bending tests are performed to quantify the fracture toughness and reveal the defor...
4 pages, 4 figures, few minor corrections, Fig. 1b changedWe report in situ Atomic Force Microscopy ...
Recent experimental studies have revealed nanoscale cavities and periodic corrugations on the fractu...
The mechanical properties of amorphous alloys have proven both scientifically unique and of potentia...
Significant progress in understanding the mechanical behavior of metallic glasses (MGs) was made ove...
Amorphous alloys possess attractive combinations of mechanical properties (high elastic limit, ~2%, ...
Amorphous alloys (also referred to as metallic glasses) demonstrate superior mechanical strength, el...