Interface segregation of solute atoms has a profound effect on properties of engineering alloys. The occurrence of solute segregation in coherent twin boundaries (CTBs) in Mg alloys is commonly considered to be induced by atomic size effect where solute atoms larger than Mg take extension sites and those smaller ones take compression sites in CTBs. Here we report an unusual solute segregation phenomenon in a group of Mg alloys—solute atoms larger than Mg unexpectedly segregate to compression sites of {101 ¯ 1} fully coherent twin boundary and do not segregate to the extension or compression site of {101 ¯ 2} fully coherent twin boundary. We propose that such segregation is dominated by chemical bonding (coordination and solute electronic co...
Grain boundary (GB) segregation substantially alters structural and functional properties of metalli...
International audienceIntergranular segregation is studied for the first time in an asymmetrical gra...
Solute segregation in grain boundaries (GBs) is used in design to stabilize nanocrystalline alloys. ...
Segregation of solute atoms at twin boundaries (TBs) plays a critical role in mechanical properties ...
Modern engineering alloys contain multiple alloying elements, but their direct observation when segr...
Twin boundaries play an important role in shaping the mechanical properties of Mg and Mg alloys. In ...
Grain boundaries are important planar defects which influence a variety of bulk properties, while th...
In magnesium alloys with multiple substitutional elements, solute segregation at grain boundaries (G...
Interactions of solute atoms in biodegradable zinc alloys and their effect on alloy mechanical prope...
Hydrogen is a common impurity or artificially added element in magnesium alloys and is generally kno...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
The segregation of solute atoms at grain boundaries (GBs) can profoundly impact the structural prope...
Grain boundary (GB) segregation is an important phenomenon that affects many physical properties, as...
Abstract-Segregation of substitutional, oversized solute atoms to both equilibrium and metastable st...
Despite their wide presence in hcp metals, incoherent tilt grain boundaries (ITGBs) are rarely studi...
Grain boundary (GB) segregation substantially alters structural and functional properties of metalli...
International audienceIntergranular segregation is studied for the first time in an asymmetrical gra...
Solute segregation in grain boundaries (GBs) is used in design to stabilize nanocrystalline alloys. ...
Segregation of solute atoms at twin boundaries (TBs) plays a critical role in mechanical properties ...
Modern engineering alloys contain multiple alloying elements, but their direct observation when segr...
Twin boundaries play an important role in shaping the mechanical properties of Mg and Mg alloys. In ...
Grain boundaries are important planar defects which influence a variety of bulk properties, while th...
In magnesium alloys with multiple substitutional elements, solute segregation at grain boundaries (G...
Interactions of solute atoms in biodegradable zinc alloys and their effect on alloy mechanical prope...
Hydrogen is a common impurity or artificially added element in magnesium alloys and is generally kno...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
The segregation of solute atoms at grain boundaries (GBs) can profoundly impact the structural prope...
Grain boundary (GB) segregation is an important phenomenon that affects many physical properties, as...
Abstract-Segregation of substitutional, oversized solute atoms to both equilibrium and metastable st...
Despite their wide presence in hcp metals, incoherent tilt grain boundaries (ITGBs) are rarely studi...
Grain boundary (GB) segregation substantially alters structural and functional properties of metalli...
International audienceIntergranular segregation is studied for the first time in an asymmetrical gra...
Solute segregation in grain boundaries (GBs) is used in design to stabilize nanocrystalline alloys. ...