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Grain structure and dislocation density measurements in a friction stir welded aluminum alloy using x-ray peak profile analys...

by Wan Chuck Woo, Levente Balogh, Tomas Ungar, Hahn Choo, Zhili Feng
Publication Type
Journal
Journal Name
Materials Science and Engineering A
Publication Date
Page Numbers
308 to 313
Volume
498
Issue
1-2

The dislocation density and grain structure of a friction stir welded 6061-T6 aluminum alloy was determined as a function of distance from the weld centerline using high-resolution micro-beam x-ray diffraction. The results of the x-ray peak profile analysis show that the dislocation density is about 1.2 x 10^14 m-2 inside and 4.8 x 10^14 m-2 outside of the weld region. The average subgrain size is about 180 nm in both regions. Compared to the base material, the dislocation density was significantly decreased in the dynamic recrystallized zone of the friction stir welds, which is a good correlation with the TEM observations. The influence of the dislocation density on the strain hardening behavior during tensile deformation is also discussed.