The mechanisms of superplasticity occurring in conventional materials, having grains sizes of the order of a few microns, are now understood reasonably well. However, very recent advances in the processing of ultrafine-grained (UFG) metals have provided an opportunity to extend the understanding of flow behavior to include UFG materials with submicrometer grain sizes. In practice, processing through the application of severe plastic deformation (SPD), as in equal-channel angular pressing (ECAP) and high-pressure torsion (HPT), has permitted the fabrication of relatively large samples having UFG microstructures. Since the occurrence of superplastic flow generally requires a grain size smaller than ~10 ?m, it is reasonable to anticipate that ...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Demirtas, Muhammet/0000-0002-7357-3892WOS: 000472621600009Achieving superplasticity at high temperat...
The mechanisms of superplasticity occurring in conventional materials, having grains sizes of the or...
The bulk ultrafine-grained (UFG) materials usually show superior mechanical properties. Since the oc...
The processing of metals through the application of severe plastic deformation (SPD) provides an opp...
The processing of bulk metals through the application of severe plastic deformation provides an oppo...
The synthesis of ultrafine-grained (UFG) materials is very attractive because small grains lead to e...
The processing of bulk metals through the application of severe plastic deformation provides an oppo...
Processing through the application of severe plastic deformation provides an opportunity for produci...
Processing through the application of severe plastic deformation (SPD) provides an opportunity for a...
An analysis was conducted to examine the flow behavior of ultrafine-grained (UFG) metals produced by...
Processing through the application of severe plastic deformation (SPD) leads to very significant gra...
Superplasticity refers to the ability of a polycrystalline solid to exhibit a high elongation, of at...
Superplasticity refers to the ability of a polycrystalline solid to exhibit a high elongation, of at...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Demirtas, Muhammet/0000-0002-7357-3892WOS: 000472621600009Achieving superplasticity at high temperat...
The mechanisms of superplasticity occurring in conventional materials, having grains sizes of the or...
The bulk ultrafine-grained (UFG) materials usually show superior mechanical properties. Since the oc...
The processing of metals through the application of severe plastic deformation (SPD) provides an opp...
The processing of bulk metals through the application of severe plastic deformation provides an oppo...
The synthesis of ultrafine-grained (UFG) materials is very attractive because small grains lead to e...
The processing of bulk metals through the application of severe plastic deformation provides an oppo...
Processing through the application of severe plastic deformation provides an opportunity for produci...
Processing through the application of severe plastic deformation (SPD) provides an opportunity for a...
An analysis was conducted to examine the flow behavior of ultrafine-grained (UFG) metals produced by...
Processing through the application of severe plastic deformation (SPD) leads to very significant gra...
Superplasticity refers to the ability of a polycrystalline solid to exhibit a high elongation, of at...
Superplasticity refers to the ability of a polycrystalline solid to exhibit a high elongation, of at...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Conventional superplasticity is generally achieved in metals having grain sizes in the range of ?2 t...
Demirtas, Muhammet/0000-0002-7357-3892WOS: 000472621600009Achieving superplasticity at high temperat...