A considerable amount of superfine Si precipitates with the sizes ranging from 5 to 15 nm were found uniformly dispersed in the Al matrix of an Al-1Si (wt.%) alloy after electropulsing treatment. Through high resolution transmission electron microscopy (HRTEM), an unusual 9R (ABCBCACAB...) ordered stacking faults were identified within the Si precipitates with a truncated tetrahedral morphology that hold a (1 1 1) Si //(1 1 1) Al & [101‾] Si //[11‾0] Al orientation relationship with the Al matrix. An atomistic model was established to preform image simulations and explain that the existence of these nanosized Si precipitates is attributable to increment of coincidence lattice sites between Si and Al
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
Precipitation hardening, in which small particles inhibit the movement of dislocations to strengthen...
The number and distribution of silicon precipitates were examined with the transmission electron mic...
This paper compares the nano-scale structure of β” precipitates in a peak-aged Al-Mg-Si alloy before...
Al-Mg-Si(-Cu)alloys, used primarily in the transportation sector, are strengthened by nano...
Pure Al (AA196) and Al–Si (A356) alloy were subjected to surface nanocrystallization through surface...
The age-hardenable Al–Mg–Si alloy system is strengthened by needle-shaped coherent β″ phase precipit...
The heterogeneous nucleation of primary Si and eutectic Si can be attributed to the presence of AlP....
The mechanical properties of Al-7 wt.% Si can be enhanced by structural modifications of its eutecti...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Precipitates in a lean Al–Mg–Si alloy with low Cu addition (~0.10 wt.%) were investigated by aberrat...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
Precipitation hardening, in which small particles inhibit the movement of dislocations to strengthen...
The number and distribution of silicon precipitates were examined with the transmission electron mic...
This paper compares the nano-scale structure of β” precipitates in a peak-aged Al-Mg-Si alloy before...
Al-Mg-Si(-Cu)alloys, used primarily in the transportation sector, are strengthened by nano...
Pure Al (AA196) and Al–Si (A356) alloy were subjected to surface nanocrystallization through surface...
The age-hardenable Al–Mg–Si alloy system is strengthened by needle-shaped coherent β″ phase precipit...
The heterogeneous nucleation of primary Si and eutectic Si can be attributed to the presence of AlP....
The mechanical properties of Al-7 wt.% Si can be enhanced by structural modifications of its eutecti...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...