Metastable solid solutions can form preferably over intermetallic compounds, in cast high-entropy alloys or multi-component alloys with equi- or nearly equi-atomic compositions, due to the entropy contribution at elevated temperatures. Meanwhile, the high mixing entropy also favors the amorphous phase formation. The phase selection between solid solutions and the amorphous phase upon alloying in high-entropy alloys is intriguing. A two-parameter physical scheme, utilizing the atomic size polydispersity and mixing enthalpy, is found to be capable of capturing this phase selection mechanism. (C) 2013 Elsevier Ltd. All rights reserved
International audienceAtomic-scale simulations and modelling were carried out to investigate the the...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
High-performance structural materials are critical to the development of transportation, energy, and...
AbstractThe alloy design for equiatomic multi-component alloys was rationalized by statistically ana...
The alloy design for equiatomic multi-component alloys was rationalized by statistically analyzing t...
This paper summarises existing phase selection rules for cast high entropy alloys. Essentially, they...
Amorphous and solid-solution phases are both with high entropy; the former is mainly with topologica...
This chapter gives an overview of existing active phase formation rules for high-entropy alloys (HEA...
[[abstract]]A high-entropy alloy (HEA) has been defined by us to have at least five principal elemen...
Chemical and topological parameters have been widely used for predicting the phase selection in high...
High-entropy alloys (HEAs) have been investigated considerably in the last decade. The phase selecti...
International audienceIn order to systematically compare high entropy alloys (HEA) and conventional ...
In recent years, people have tended to adjust the degree of order/disorder to explore new materials....
The existing high-entropy alloys' phase formation prediction models are established based on empiric...
High-entropy alloys constitute a new class of materials whose very existence poses fundamental quest...
International audienceAtomic-scale simulations and modelling were carried out to investigate the the...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
High-performance structural materials are critical to the development of transportation, energy, and...
AbstractThe alloy design for equiatomic multi-component alloys was rationalized by statistically ana...
The alloy design for equiatomic multi-component alloys was rationalized by statistically analyzing t...
This paper summarises existing phase selection rules for cast high entropy alloys. Essentially, they...
Amorphous and solid-solution phases are both with high entropy; the former is mainly with topologica...
This chapter gives an overview of existing active phase formation rules for high-entropy alloys (HEA...
[[abstract]]A high-entropy alloy (HEA) has been defined by us to have at least five principal elemen...
Chemical and topological parameters have been widely used for predicting the phase selection in high...
High-entropy alloys (HEAs) have been investigated considerably in the last decade. The phase selecti...
International audienceIn order to systematically compare high entropy alloys (HEA) and conventional ...
In recent years, people have tended to adjust the degree of order/disorder to explore new materials....
The existing high-entropy alloys' phase formation prediction models are established based on empiric...
High-entropy alloys constitute a new class of materials whose very existence poses fundamental quest...
International audienceAtomic-scale simulations and modelling were carried out to investigate the the...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
High-performance structural materials are critical to the development of transportation, energy, and...