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Article type: Research Article
Authors: Martins, R.V. | Honkimäki, V.
Affiliations: Risø National Laboratory, Materials Research Department, DK-4000 Roskilde, Denmark | European Synchrotron Radiation Facility, B.P. 220, F-38043 Grenoble Cedex, France
Note: [] Corresponding author. Address: Institute for Materials Research, GKSS-Research Center, P.O. Box 1160, D-21494 Geesthacht, Germany. E-mail: rene.valery.martins@risoe.dk
Abstract: The through thickness strain and depth resolved phase distribution in a dissimilar friction stir weld (FSW) of monolithic AA2024T3 to AA2014 + 34 vol.% Al2O3 is measured non-destructively. The measurements are performed using a novel strain and phase mapping technique. The technique is based on the use of a focused high-energy synchrotron beam, a novel spiral slit system, and an area detector system. The strong asymmetry of the calculated residual stress profiles is mainly due to the dominance of hydrostatic stresses in the metal matrix composite (MMC) side of the weld. Tensile stresses up to + 190 MPa are observed in the Al phase. The large residual stress gradient in the weld centre correlates with the weak mixing of the dissimilar plate materials.
Keywords: Friction stir weld, Spiral slit, Residual strain, High-energy synchrotron radiation, X-ray diffraction, Metal matrix composite
DOI: 10.1080/10238160410001726747
Journal: Journal of Neutron Research, vol. 11, no. 4, pp. 277-281, 2003
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