A Zn-22% Al eutectoid alloy was processed by Equal-Channel Angular Pressing (ECAP) to produce an ultrafine grain size and then pulled in tension at elevated temperatures to evaluate the role of internal cavitation under superplastic conditions. Tensile testing yielded a highest elongation of 2,230% at a strain rate of 1.0 × 10?2 s?1 at 473 K representing high strain rate superplasticity. Quantitative cavity measurements were taken to investigate the significance of the internal cavities formed during superplastic deformation. The results demonstrate that cavity nucleation occurs continuously throughout superplastic flow, and there is a transition in the cavity growth mechanism from superplastic diffusion growth at the smaller cavity sizes t...
The magnesium AZ31 alloy exhibits excellent superplastic properties after processing by equal-channe...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Most superplastic materials fail by the nucleation, growth and interlinkage of cavities. Professor L...
A Zn-22% Al eutectoid alloy was processed by equal-channel angular pressing for 8 passes at 473K and...
A Zn–22% Al eutectoid alloy was processed by equal-channel angular pressing for 8 passes at 473 K an...
Quantitative measurements were taken to evaluate the significance of cavitation in the tensile testi...
Experiments were conducted on a commercial aluminum Al-2004 alloy known as Supral 100 and containing...
Experiments were conducted on a magnesium AZ31 alloy to evaluate the role of cavitation in high temp...
The study of the exact physical mechanism of cavity nucleation and growth is significant in terms of...
Experiments were conducted on the Al-33% Cu eutectic alloy in both an annealed and an as-extruded co...
A quantitative analysis of cavitation damage in a superplastic ZnAl alloy has been made, and results...
The effect of strain rate, temperature, and grain size on the cavitation of superplastically deforme...
Experiments were conducted to evaluate the failure behavior and the cavitation characteristics of an...
A number of materials is subject to the cavitation during superplastic deformation. The cavities nuc...
An Al---Cu---Li---Zr alloy processed to recrystallize statically exhibits superplastic characteristi...
The magnesium AZ31 alloy exhibits excellent superplastic properties after processing by equal-channe...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Most superplastic materials fail by the nucleation, growth and interlinkage of cavities. Professor L...
A Zn-22% Al eutectoid alloy was processed by equal-channel angular pressing for 8 passes at 473K and...
A Zn–22% Al eutectoid alloy was processed by equal-channel angular pressing for 8 passes at 473 K an...
Quantitative measurements were taken to evaluate the significance of cavitation in the tensile testi...
Experiments were conducted on a commercial aluminum Al-2004 alloy known as Supral 100 and containing...
Experiments were conducted on a magnesium AZ31 alloy to evaluate the role of cavitation in high temp...
The study of the exact physical mechanism of cavity nucleation and growth is significant in terms of...
Experiments were conducted on the Al-33% Cu eutectic alloy in both an annealed and an as-extruded co...
A quantitative analysis of cavitation damage in a superplastic ZnAl alloy has been made, and results...
The effect of strain rate, temperature, and grain size on the cavitation of superplastically deforme...
Experiments were conducted to evaluate the failure behavior and the cavitation characteristics of an...
A number of materials is subject to the cavitation during superplastic deformation. The cavities nuc...
An Al---Cu---Li---Zr alloy processed to recrystallize statically exhibits superplastic characteristi...
The magnesium AZ31 alloy exhibits excellent superplastic properties after processing by equal-channe...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Most superplastic materials fail by the nucleation, growth and interlinkage of cavities. Professor L...