The crack propagation behavior of Al containing Mg–Si clusters is investigated using molecular dynamics (MD) simulations to demonstrate the relationship between the natural aging time in Al–Si–Mg alloys and ductility. Experimental results show that the elongation at failure decreases with natural aging. There are few studies on the relationship between natural aging and ductility because of the difficult observation of Mg–Si clusters. To solve the difficulty, cracked Al containing Mg–Si clusters of varying sizes are assumed for the MD simulations. A larger Mg–Si cluster in Al results in earlier crack opening and dislocation emission. Moreover, as the Mg–Si cluster size increases, the stress near the crack tip becomes more concentrated. This...
In a broad sense, the work described herein addresses either extreme of a traditional da/dN vs. dK p...
Medium to high strength heat-treatable aluminum alloys of the 6000 series (Al-Mg-Si) have long been ...
The mechanisms of deformation and failure in Al-Si nanocomposites, formed by adding Si particles to ...
Understanding the influence of atomic clusters formed during natural aging in aluminum alloys is a k...
The crack growth behavior of single crystal aluminum is investigated under tensile test at room temp...
International audienceThis study investigates rapid but limited crack propagation associated with a ...
International audienceThis study investigates rapid but limited crack propagation associated with a ...
To enhance the toughness of metallic glasses (MGs), considerable scientific efforts have been made t...
Partial aging of AA6060 aluminum alloys is known to result in a microstructure characterized by need...
Atomistic simulations can illuminate detailed mechanisms of brittle and ductile fracture and plastic...
The technological relevance of Al-Mg-Si alloys has been rapidly growing over the last decade. Of par...
Two types of nanoclusters, Cluster (1) and Cluster (2), formed at around room temperature and 100 &#...
The effect of clustering during natural aging of three different Al-Mg-Sialloys with equal Mg/Si-rat...
International audienceA deterioration of fracture toughness, especially of the tearing modulus, with...
The effect of Ag and Cu addition on clustering behavior of Al-Mg-Si alloys during natural aging (NA)...
In a broad sense, the work described herein addresses either extreme of a traditional da/dN vs. dK p...
Medium to high strength heat-treatable aluminum alloys of the 6000 series (Al-Mg-Si) have long been ...
The mechanisms of deformation and failure in Al-Si nanocomposites, formed by adding Si particles to ...
Understanding the influence of atomic clusters formed during natural aging in aluminum alloys is a k...
The crack growth behavior of single crystal aluminum is investigated under tensile test at room temp...
International audienceThis study investigates rapid but limited crack propagation associated with a ...
International audienceThis study investigates rapid but limited crack propagation associated with a ...
To enhance the toughness of metallic glasses (MGs), considerable scientific efforts have been made t...
Partial aging of AA6060 aluminum alloys is known to result in a microstructure characterized by need...
Atomistic simulations can illuminate detailed mechanisms of brittle and ductile fracture and plastic...
The technological relevance of Al-Mg-Si alloys has been rapidly growing over the last decade. Of par...
Two types of nanoclusters, Cluster (1) and Cluster (2), formed at around room temperature and 100 &#...
The effect of clustering during natural aging of three different Al-Mg-Sialloys with equal Mg/Si-rat...
International audienceA deterioration of fracture toughness, especially of the tearing modulus, with...
The effect of Ag and Cu addition on clustering behavior of Al-Mg-Si alloys during natural aging (NA)...
In a broad sense, the work described herein addresses either extreme of a traditional da/dN vs. dK p...
Medium to high strength heat-treatable aluminum alloys of the 6000 series (Al-Mg-Si) have long been ...
The mechanisms of deformation and failure in Al-Si nanocomposites, formed by adding Si particles to ...