In this review, the phenomenon of grain boundary (GB) wetting by the second solid phase is analyzed for the high entropy alloys (HEAs). Similar to the GB wetting by the liquid phase, the GB wetting by the second solid phase can be incomplete (partial) or complete. In the former case, the second solid phase forms in the GB of a matrix, the chain of (usually lenticular) precipitates with a certain non-zero contact angle. In the latter case, it forms in the GB continuous layers between matrix grains which completely separate the matrix crystallites. The GB wetting by the second solid phase can be observed in HEAs produced by all solidification-based technologies. The particle chains or continuous layers of a second solid phase form in GBs also...
We employ atomistic computer simulations to study the structure and migration behavior of a Σ11 symm...
Abstract. Grain growth was studied in high purity Al-Ga alloys with Ga contents of 0.001, 0.005 and ...
Microstructural phase evolution during melting and casting depends on the rate of cooling, the colle...
In this review, the phenomenon of grain boundary (GB) wetting by the second solid phase is analyzed ...
In this review, we analyze the structure of multicomponent alloys without principal components (they...
In this review, the phenomenon of grain boundary (GB) wetting by melt is analyzed for multicomponent...
Abstract. Grain boundary (GB) phase transitions can change drastically the properties of polycrystal...
Abstract. Grain boundary (GB) phase transitions can change drastically the properties of polycrystal...
The multicomponent alloys with nearly equal concentration of components, also known as high entropy ...
We reveal a novel phenomenon, i.e., twin boundary-assisted precipitation of sigma phase in a non-equ...
High-entropy alloys (HEAs) are called also alloys without a main component or multiprincipal alloys....
Grain boundaries (GBs) can be treated as two-dimensional (2-D) interfacial phases (also called 'comp...
Grain boundaries exhibit phase-like behavior in which their structure, chemistry and properties may ...
Usually one distinguishes partial and complete wetting of surfaces or interfaces. In case of partial...
Most natural and engineered crystalline materials are polycrystalline, and grain boundaries (GBs) ar...
We employ atomistic computer simulations to study the structure and migration behavior of a Σ11 symm...
Abstract. Grain growth was studied in high purity Al-Ga alloys with Ga contents of 0.001, 0.005 and ...
Microstructural phase evolution during melting and casting depends on the rate of cooling, the colle...
In this review, the phenomenon of grain boundary (GB) wetting by the second solid phase is analyzed ...
In this review, we analyze the structure of multicomponent alloys without principal components (they...
In this review, the phenomenon of grain boundary (GB) wetting by melt is analyzed for multicomponent...
Abstract. Grain boundary (GB) phase transitions can change drastically the properties of polycrystal...
Abstract. Grain boundary (GB) phase transitions can change drastically the properties of polycrystal...
The multicomponent alloys with nearly equal concentration of components, also known as high entropy ...
We reveal a novel phenomenon, i.e., twin boundary-assisted precipitation of sigma phase in a non-equ...
High-entropy alloys (HEAs) are called also alloys without a main component or multiprincipal alloys....
Grain boundaries (GBs) can be treated as two-dimensional (2-D) interfacial phases (also called 'comp...
Grain boundaries exhibit phase-like behavior in which their structure, chemistry and properties may ...
Usually one distinguishes partial and complete wetting of surfaces or interfaces. In case of partial...
Most natural and engineered crystalline materials are polycrystalline, and grain boundaries (GBs) ar...
We employ atomistic computer simulations to study the structure and migration behavior of a Σ11 symm...
Abstract. Grain growth was studied in high purity Al-Ga alloys with Ga contents of 0.001, 0.005 and ...
Microstructural phase evolution during melting and casting depends on the rate of cooling, the colle...