Global mechanical tensioning for the management of residual stresses in welds
نویسندگان
چکیده
The general principles behind the global mechanical tensioning technique for controlling weld residual stresses are examined using a finite lement model to follow their evolution throughout the welding process. While we focus specifically on friction stir welding, the tool is represented imply as a heat source. As a result, the findings have relevance to a wide range of welding processes. For aluminium alloy friction stir welds, he maximum longitudinal weld stresses have been reported to fall approximately linearly to zero under mechanical tensioning to a level around 0% of the yield stress. Under larger tensioning levels, the weld stress becomes increasingly compressive. This behaviour is explained in terms of he reduction in compressive plastic straining ahead, and an increase in tensile plastic straining behind, the heat source as the tensioning level is ncreased. Finally, it is shown that tensioning during welding is much more effective than post-weld tensioning. 2008 Elsevier B.V. All rights reserved.
منابع مشابه
FE Modelling of Mechanical Tensioning for Controlling Residual Stresses in Friction Stir Welds
D.G. Richards, P.B. Prangnell, P.J. Withers, S.W. Williams, A. Wescott, E.C Oliver Manchester Materials Science Centre, UMIST, Grosvenor St. Manchester, M1 7HS, UK. Cranfield University, Welding Engineering Research Centre, Bedfordshire, MK43 OAL, UK. BAE Systems, Optics and Laser Technology Department, Advanced Technology Centre, P.O. Box 5, FPC 267, Bristol, BS12 7QW, UK. 4 ISIS Facility, CCL...
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