A prerequisite to utilize the full potential of structural heterogeneities for improving the room-temperature plastic deformation of bulk metallic glasses (BMGs) is to understand their interaction with the mechanism of shear band formation and propagation. This task requires the ability to artificially create heterogeneous microstructures with controlled morphology and orientation. Here, we analyze the effect of the designed heterogeneities generated by imprinting on the tensile mechanical behavior of the ZrTiCuNiAl BMG by using experimental and computational methods. The imprinted material is elastically heterogeneous and displays anisotropic mechanical properties: strength and ductility increase with increasing the loading angle between i...
Structural heterogeneities in monolithic metallic glasses, i.e. free volume variations or stress/str...
Author name used in this publication: Yong YangAuthor name used in this publication: Jianchao YeAuth...
Strain localization during plastic deformation drastically reduces the shear band stability in metal...
A prerequisite to utilize the full potential of structural heterogeneities for improving the room-te...
Unraveling the microstructural heterogeneity is an important issue to understand the physical and m...
Amorphous materials such as bulk metallic glass (BMG) lack an orientational long-range order unlike ...
It has been well known that plastic deformation of bulk metallic glasses (BMGs) is localised in thin...
Shear bands are the key feature that controls deformation in bulk metallic glasses (BMGs). This stud...
Metallic glasses (MGs) possess remarkably high strength but often display only minimal tensile ducti...
Controlling shear band propagation is the key to obtain ductile metallic glasses. Here, we use a res...
The great technological potential for bulk metallic glasses (BMGs) arises primarily because of their...
While inelastic mechanical behaviour of crystalline materials is well-understood in terms of lattice...
Recent investigations have demonstrated that the plasticity of bulk metallic glasses (BMGs) at room ...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
Structural heterogeneities in monolithic metallic glasses, i.e. free volume variations or stress/str...
Author name used in this publication: Yong YangAuthor name used in this publication: Jianchao YeAuth...
Strain localization during plastic deformation drastically reduces the shear band stability in metal...
A prerequisite to utilize the full potential of structural heterogeneities for improving the room-te...
Unraveling the microstructural heterogeneity is an important issue to understand the physical and m...
Amorphous materials such as bulk metallic glass (BMG) lack an orientational long-range order unlike ...
It has been well known that plastic deformation of bulk metallic glasses (BMGs) is localised in thin...
Shear bands are the key feature that controls deformation in bulk metallic glasses (BMGs). This stud...
Metallic glasses (MGs) possess remarkably high strength but often display only minimal tensile ducti...
Controlling shear band propagation is the key to obtain ductile metallic glasses. Here, we use a res...
The great technological potential for bulk metallic glasses (BMGs) arises primarily because of their...
While inelastic mechanical behaviour of crystalline materials is well-understood in terms of lattice...
Recent investigations have demonstrated that the plasticity of bulk metallic glasses (BMGs) at room ...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
Structural heterogeneities in monolithic metallic glasses, i.e. free volume variations or stress/str...
Author name used in this publication: Yong YangAuthor name used in this publication: Jianchao YeAuth...
Strain localization during plastic deformation drastically reduces the shear band stability in metal...