It was previously reported that the strength of metallic glasses (MGs) would scale inversely with the size of a sample or a deformation field, commonly known as “smaller-being-stronger”. However, based on the extensive spherical nanoindentation experiments conducted across a variety of MGs, we demonstrate that such strength-size scaling breaks down at a critical indenter tip radius, which is caused by the transition of the yielding mechanism from bulk- to surface-controlled shear band initiation. Our experimental findings also provide an explanation for the unusual strength scattering observed in the micro-compression of MGs.Department of Mechanical Engineerin
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
We combine non-contact atomic force microscopy (AFM) imaging and AFM indentation in ultra-high vacuu...
This paper reports the results of compression tests conducted in situ in a transmission electron mic...
The sample size effect on the deformation behavior of metallic glasses (MGs) has recently become res...
Experiments show an intriguing brittle-to-ductile transition on size reduction on nanoscale metallic...
PolyU Library Call No.: [THS] LG51 .H577P ME 2015 Wangxv, 141 pages :color illustrationsSince the Br...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The mechanical properties and deformation mechanism of Sc75Fe25 nanoglass and Sc75Fe25 metallic glas...
Since the 1960s, metallic glasses (MGs) have attracted tremendous re-search interest in materials sc...
Depending on the composition and structure of metallic glasses cells with the dimensions in the rang...
Offering some of the highest specific strength and resilience values known among bulk materials, met...
We report results of uniaxial compression tests on Zr_(35)Ti_(30)Co_(6)Be_(29) metallic glass nano-...
Spatial heterogeneity, as a crucial structural feature, has been intensively studied in metallic gla...
Quantitative bending and compression tests on micropillars made of two different amorphous alloys, w...
Amorphous metallic alloys, or metallic glasses, are lucrative engineering materials owing to their s...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
We combine non-contact atomic force microscopy (AFM) imaging and AFM indentation in ultra-high vacuu...
This paper reports the results of compression tests conducted in situ in a transmission electron mic...
The sample size effect on the deformation behavior of metallic glasses (MGs) has recently become res...
Experiments show an intriguing brittle-to-ductile transition on size reduction on nanoscale metallic...
PolyU Library Call No.: [THS] LG51 .H577P ME 2015 Wangxv, 141 pages :color illustrationsSince the Br...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The mechanical properties and deformation mechanism of Sc75Fe25 nanoglass and Sc75Fe25 metallic glas...
Since the 1960s, metallic glasses (MGs) have attracted tremendous re-search interest in materials sc...
Depending on the composition and structure of metallic glasses cells with the dimensions in the rang...
Offering some of the highest specific strength and resilience values known among bulk materials, met...
We report results of uniaxial compression tests on Zr_(35)Ti_(30)Co_(6)Be_(29) metallic glass nano-...
Spatial heterogeneity, as a crucial structural feature, has been intensively studied in metallic gla...
Quantitative bending and compression tests on micropillars made of two different amorphous alloys, w...
Amorphous metallic alloys, or metallic glasses, are lucrative engineering materials owing to their s...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
We combine non-contact atomic force microscopy (AFM) imaging and AFM indentation in ultra-high vacuu...
This paper reports the results of compression tests conducted in situ in a transmission electron mic...