The temperature behaviour of an Al bicrystal with surfaces consisting of (110) and (111) crystals is simulated using molecular dynamics. The result shows that the (110) crystal losses its crystalline order at 820K, whereas the disorder does not propagate through the (111) crystal at this temperature. Instead, some disordered atoms are recrystallized into the (111) crystal and the initial grain boundary changes into a stable order-disorder interface. Thus, it was discovered that at a temperature near its melting point, the (111) crystal grew and obstructed the propagation of disorder. Such an obstruction is helpful for understanding melting
International audienceThe local mechanical behavior near symmetric tilt grain boundaries in aluminu...
International audienceIn this work, the coupled phase field-crystal plasticity constitutive framewor...
International audienceThe boundary between two crystal grains can decompose into arrays of facets wi...
The temperature behaviour of an Al bicrystal with surfaces consisting of (110) and (111) crystals is...
Molecular dynamics (MD) simulations using Morse interaction potential are performed in studies of [1...
Grain boundaries arc known to exert a profound influence on the properties of polycrystalline materi...
Grain boundaries (GBs) can play a role as the favored locations to annihilate point defects, such as...
Grain boundary (GB), a special solid-solid interface in materials, exists in all polycrystalline mat...
The thermo-kinetic characteristics that dictate the activation of atomistic crystal defects signific...
Grain boundaries (GBs) provide a source and/or a sink for crystal defects and store elastic energy d...
The shear-induced coupled grain boundary motion plays an important role in the deformation of nanocr...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
The solidification of pure aluminum has been studied by a large-scale molecular dynamic simulation. ...
The influence of the temperature and sort of alloying element on the deformation of the nanocrystall...
The measurement of grain boundary migration in pure Al bicrystals by X-ray continuous interface trac...
International audienceThe local mechanical behavior near symmetric tilt grain boundaries in aluminu...
International audienceIn this work, the coupled phase field-crystal plasticity constitutive framewor...
International audienceThe boundary between two crystal grains can decompose into arrays of facets wi...
The temperature behaviour of an Al bicrystal with surfaces consisting of (110) and (111) crystals is...
Molecular dynamics (MD) simulations using Morse interaction potential are performed in studies of [1...
Grain boundaries arc known to exert a profound influence on the properties of polycrystalline materi...
Grain boundaries (GBs) can play a role as the favored locations to annihilate point defects, such as...
Grain boundary (GB), a special solid-solid interface in materials, exists in all polycrystalline mat...
The thermo-kinetic characteristics that dictate the activation of atomistic crystal defects signific...
Grain boundaries (GBs) provide a source and/or a sink for crystal defects and store elastic energy d...
The shear-induced coupled grain boundary motion plays an important role in the deformation of nanocr...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
The solidification of pure aluminum has been studied by a large-scale molecular dynamic simulation. ...
The influence of the temperature and sort of alloying element on the deformation of the nanocrystall...
The measurement of grain boundary migration in pure Al bicrystals by X-ray continuous interface trac...
International audienceThe local mechanical behavior near symmetric tilt grain boundaries in aluminu...
International audienceIn this work, the coupled phase field-crystal plasticity constitutive framewor...
International audienceThe boundary between two crystal grains can decompose into arrays of facets wi...