It is generally accepted that good glass formers have a high thermal stability against crystallization upon heating. In this paper, we report an unusual relationship between thermal stability and glass-forming ability (GFA) for high-entropy bulk metallic glasses (HE-BMGs). As compared with their conventional counterparts in the same alloy system, the HE-BMGs have a lower energy barrier for atomic diffusion during undercooling, which facilitates crystallization and then reduces the GFA. Our results clearly demonstrate that the GFA of BMGs is governed by the kinetics of the undercooled liquid, whilst their thermal stability is controlled by atomic diffusion in the glass-transition regime
The alloy design for equiatomic multi-component alloys was rationalized by statistically analyzing t...
Due to their brittleness, bulk metallic glasses (BMG) are generally difficult to form at room temper...
An experimental study of the configurational thermodynamics for a series of near-eutectic Pt_(80-x)C...
Two kinds of phase stabilization mechanism are discussed and compared: the first is characteristic o...
In contrast to pure metals and most non-glass forming alloys, metallic glass-formers are moderately ...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Here the authors study thermodynamic and dynamic glass transition of high entropy metallic glasses. ...
Bulk metallic glasses (BMGs) are typically formed from the rapid quenching of multicomponent metalli...
Recent studies on intermetallic glasses challenged the conventional cognition that the glass formabi...
During the last two decades, researchers have developed families of metal alloys that exhibit except...
In this paper, we report that two newly designed high entropy bulk metallic glasses (HE-BMGs), Ti20H...
The thermal stability of Nd60Fe20Co10Al10 bulk metallic glass (BMG) has been studied by differential...
The liquid fragility of metallic glasses has been long recognized as an important part of understand...
High temperature deformation was probed in a La-based high entropy metallic glass with an evident sl...
Funding Information: This research was funded by the European Union Horizon 2020 research and innova...
The alloy design for equiatomic multi-component alloys was rationalized by statistically analyzing t...
Due to their brittleness, bulk metallic glasses (BMG) are generally difficult to form at room temper...
An experimental study of the configurational thermodynamics for a series of near-eutectic Pt_(80-x)C...
Two kinds of phase stabilization mechanism are discussed and compared: the first is characteristic o...
In contrast to pure metals and most non-glass forming alloys, metallic glass-formers are moderately ...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Here the authors study thermodynamic and dynamic glass transition of high entropy metallic glasses. ...
Bulk metallic glasses (BMGs) are typically formed from the rapid quenching of multicomponent metalli...
Recent studies on intermetallic glasses challenged the conventional cognition that the glass formabi...
During the last two decades, researchers have developed families of metal alloys that exhibit except...
In this paper, we report that two newly designed high entropy bulk metallic glasses (HE-BMGs), Ti20H...
The thermal stability of Nd60Fe20Co10Al10 bulk metallic glass (BMG) has been studied by differential...
The liquid fragility of metallic glasses has been long recognized as an important part of understand...
High temperature deformation was probed in a La-based high entropy metallic glass with an evident sl...
Funding Information: This research was funded by the European Union Horizon 2020 research and innova...
The alloy design for equiatomic multi-component alloys was rationalized by statistically analyzing t...
Due to their brittleness, bulk metallic glasses (BMG) are generally difficult to form at room temper...
An experimental study of the configurational thermodynamics for a series of near-eutectic Pt_(80-x)C...