Direct chill (DC) casting of high strength 7xxx series aluminium alloys is difficult mainly due to solidification cracking (hot cracks) and solid state cracking (cold cracks). Poor thermal properties along with extreme brittleness in the as-cast condition make DC-casting of such alloys a challenging process. Therefore, a criterion that can predict the catastrophic failure and cold cracking of the ingots would be highly beneficial to the aluminium industry. The already established criteria are dealing with the maximum principal stress component in the ingot and the plane strain fracture toughness (KIc) of the alloy under discussion. In this research work such a criterion was applied to a typical 7xxx series alloy which is highly prone to col...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Hot tearing is an irreversible failure that occurs above the the solidus temperature of an alloy dur...
Direct chill (DC) casting of high strength 7xxx series aluminium alloys is difficult mainly due to s...
For almost half a century the catastrophic failure of direct chill (DC) cast high strength aluminum ...
Cold cracking is a potentially catastrophic phenomenon in direct chill (DC) casting of 7xxx series a...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Non-homogenous cooling rates and solidification conditions during DC-casting of high strength alumin...
In Direct chill (DC) casting which is used in the manufacture of high strength aluminum alloys uneve...
In Direct chill (DC) casting which is used in the manufacture of high strength aluminum alloys uneve...
Non-homogenous cooling rates and solidification conditions during DC-casting of high strength alumin...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Hot tearing is an irreversible failure that occurs above the the solidus temperature of an alloy dur...
Direct chill (DC) casting of high strength 7xxx series aluminium alloys is difficult mainly due to s...
For almost half a century the catastrophic failure of direct chill (DC) cast high strength aluminum ...
Cold cracking is a potentially catastrophic phenomenon in direct chill (DC) casting of 7xxx series a...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Thermally induced strains and stresses developed during direct-chill (DC) semicontinuous casting of ...
Non-homogenous cooling rates and solidification conditions during DC-casting of high strength alumin...
In Direct chill (DC) casting which is used in the manufacture of high strength aluminum alloys uneve...
In Direct chill (DC) casting which is used in the manufacture of high strength aluminum alloys uneve...
Non-homogenous cooling rates and solidification conditions during DC-casting of high strength alumin...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Intergranular brittle fracture has been mainly observed and reported in steel alloys and precipitati...
Hot tearing is an irreversible failure that occurs above the the solidus temperature of an alloy dur...