A combined program of experiments and simulations is used to study the problem of cyclic indentation loading on metallic glasses. The experiments use a spherical nanoindenter tip to study shear band formation in three glasses (two based on Pd and one on Fe), after subjecting the glass to cycles of load in the nominal elastic range. In all three glasses, such elastic cycles lead to significant increases in the load required to subsequently trigger the first shear band. This cyclic hardening occurs progressively over several cycles, but eventually saturates. The effect requires cycles of sufficient amplitude and is not induced by sustained loading alone. The simulations employed a new shear transformation zone (STZ) dynamics code to reveal th...
Shear band formation has been known to be the dominant deformation mechanism at room temperature in ...
| openaire: EC/H2020/857470/EU//NOMATEN Funding Information: This research was funded by the Europea...
This study investigated the deformation behaviour of a Ti32.8Zr30.2Ni5.3Cu9Be22.7 bulk metallic glas...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
cited By 1Rate-dependent plastic deformation behavior of TiZrHfCuNiBe high entropy bulk metallic gla...
The deformation structure in terms of shear band patterns in bulk metallic glasses (BMGs) under stat...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The effect of cyclic loading on relaxation dynamics and mechanical properties of metallic glasses is...
Dynamic mechanical analysis was performed in two metallic glasses that show markedly distinct ß rela...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
By their nature Bulk Metallic Glasses (BMGs) are generally available with limited volumes. Therefore...
PolyU Library Call No.: [THS] LG51 .H577P ME 2015 Wangxv, 141 pages :color illustrationsSince the Br...
The room temperature tensile deformation behavior of two metallic glasses (MGs), Cu64Zr36 and Cu40Zr...
Shear band formation has been known to be the dominant deformation mechanism at room temperature in ...
| openaire: EC/H2020/857470/EU//NOMATEN Funding Information: This research was funded by the Europea...
This study investigated the deformation behaviour of a Ti32.8Zr30.2Ni5.3Cu9Be22.7 bulk metallic glas...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
cited By 1Rate-dependent plastic deformation behavior of TiZrHfCuNiBe high entropy bulk metallic gla...
The deformation structure in terms of shear band patterns in bulk metallic glasses (BMGs) under stat...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The effect of cyclic loading on relaxation dynamics and mechanical properties of metallic glasses is...
Dynamic mechanical analysis was performed in two metallic glasses that show markedly distinct ß rela...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
By their nature Bulk Metallic Glasses (BMGs) are generally available with limited volumes. Therefore...
PolyU Library Call No.: [THS] LG51 .H577P ME 2015 Wangxv, 141 pages :color illustrationsSince the Br...
The room temperature tensile deformation behavior of two metallic glasses (MGs), Cu64Zr36 and Cu40Zr...
Shear band formation has been known to be the dominant deformation mechanism at room temperature in ...
| openaire: EC/H2020/857470/EU//NOMATEN Funding Information: This research was funded by the Europea...
This study investigated the deformation behaviour of a Ti32.8Zr30.2Ni5.3Cu9Be22.7 bulk metallic glas...