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Microstructural Evolution During Superplastic Deformation in Large-Grained Single Phase Ni-48Al Intermetallics |
HU Jing;LIN Dongliang |
Open Laboratory of Education Ministry of China for High Temperature Materials and TestsSchool of Materials Science and Engineering;;Shanghai Jiaotong University; Shanghai 200030;Department of Materials Science and Engineering; Jiangsu Polytechnic University; Changzhou 213016 |
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Cite this article:
HU Jing; LIN Dongliang. Microstructural Evolution During Superplastic Deformation in Large-Grained Single Phase Ni-48Al Intermetallics. Acta Metall Sin, 2004, 40(5): 489-493 .
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Abstract Superplastic deformation has been found in large-grained Ni-48Al
intermetallics with grain size of 200 μm. Metallographic
examination shows that the average grain size of the
tested material decreases during superplastic deformation
and much finer grains could be obtained after superplastic
deformation. TEM and EBSD show that there
are great numbers of subgrain boundaries and the
proportion of subgrain and low angle boundaries increases with the
increase of strain. During superplastic deformation an
unstable subgrain network forms, which
absorbs gliding and climbing
dislocations and transforms into low and high angle grain
boundaries accommodated by subgrain boundary sliding,
migration and rotation. The observed
superplastic phenomenon was explained by
continuously dynamic recovery and recrystallization.
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Received: 16 April 2003
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