High-entropy alloys are random alloys with five or more components, often near equi-composition, that often exhibit excellent mechanical properties. Guiding the design of new materials across the wide composition space requires an ability to compute necessary underlying material parameters via ab initio methods. Here, density functional theory is used to compute the elemental misfit volumes, alloy lattice constant, elastic constants, and stable stacking fault energy in the fcc noble metal RhIrPdPtNiCu. These properties are then used in a recent theory for the temperature and strain-rate dependent yield strength. The parameter-free prediction of 583 MPa is in excellent agreement with the measured value of 527 MPa. This quantitative connectio...
Recently developed high-entropy alloys (HEAs) consisting of multiple principal elements represent a ...
Abstract The novel class of alloys known as high entropy alloys (HEAs) present two fundamental p...
High-entropy alloys offer a promising alternative in several high-technology applications concerning...
High Entropy Alloys (HEAs) are a new class of random alloys having impressive strength and toughness...
International audienceHigh Entropy Alloys (HEAs) are a new class of random alloys having impressive ...
A theory to predict the initial flow stress of an arbitrary N-component fcc random alloy is extended...
This research thesis discusses the current ecosystem surrounding a new type of alloy: high entropy a...
Multicomponent alloys with multiple principal elements including high entropy alloys (HEAs) and comp...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
Abstract The novel class of alloys known as high entropy alloys (HEAs) present two fundamental p...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
High-Entropy Alloys (HEAs) are an emergent class of crystalline materials have exhibited unique mech...
We combined descriptor-based analytical models for stiffness-matrix and elastic-moduli with mean-fie...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
Recently developed high-entropy alloys (HEAs) consisting of multiple principal elements represent a ...
Abstract The novel class of alloys known as high entropy alloys (HEAs) present two fundamental p...
High-entropy alloys offer a promising alternative in several high-technology applications concerning...
High Entropy Alloys (HEAs) are a new class of random alloys having impressive strength and toughness...
International audienceHigh Entropy Alloys (HEAs) are a new class of random alloys having impressive ...
A theory to predict the initial flow stress of an arbitrary N-component fcc random alloy is extended...
This research thesis discusses the current ecosystem surrounding a new type of alloy: high entropy a...
Multicomponent alloys with multiple principal elements including high entropy alloys (HEAs) and comp...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
Abstract The novel class of alloys known as high entropy alloys (HEAs) present two fundamental p...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
High-Entropy Alloys (HEAs) are an emergent class of crystalline materials have exhibited unique mech...
We combined descriptor-based analytical models for stiffness-matrix and elastic-moduli with mean-fie...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
High entropy alloys constitute a new class of materials, which recently have attracted considerable ...
Recently developed high-entropy alloys (HEAs) consisting of multiple principal elements represent a ...
Abstract The novel class of alloys known as high entropy alloys (HEAs) present two fundamental p...
High-entropy alloys offer a promising alternative in several high-technology applications concerning...