Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Khodir, Saad Ahmed
Shibayanagi, Toshiya
and
Naka, Masaaki
2006.
Control of Hardness Distribution in Friction Stir Welded AA2024-T3 Aluminum Alloy.
MATERIALS TRANSACTIONS,
Vol. 47,
Issue. 6,
p.
1560.
Robson, J. D.
and
Sullivan, A.
2006.
Process model for strength of age hardenable aluminium alloy welds.
Materials Science and Technology,
Vol. 22,
Issue. 2,
p.
146.
Robson, Joseph D.
Kamp, Nicolas
Sullivan, A.
and
Shercliff, Hugh R.
2006.
Modelling Precipitate Evolution during Friction Stir Welding of Aerospace Aluminium Alloys.
Materials Science Forum,
Vol. 519-521,
Issue. ,
p.
1101.
Khodir, Saad Ahmed
Shibayanagi, Toshiya
and
Naka, Masaaki
2006.
Microstructure and Mechanical Properties of Friction Stir Welded AA2024-T3 Aluminum Alloy.
MATERIALS TRANSACTIONS,
Vol. 47,
Issue. 1,
p.
185.
Kamp, N.
Sullivan, A.
and
Robson, J.D.
2007.
Modelling of friction stir welding of 7xxx aluminium alloys.
Materials Science and Engineering: A,
Vol. 466,
Issue. 1-2,
p.
246.
Robson, J. D.
Kamp, N.
and
Sullivan, A.
2007.
Microstructural Modelling for Friction Stir Welding of Aluminium Alloys.
Materials and Manufacturing Processes,
Vol. 22,
Issue. 4,
p.
450.
Starink, M.J.
Deschamps, A.
and
Wang, S.C.
2008.
The strength of friction stir welded and friction stir processed aluminium alloys.
Scripta Materialia,
Vol. 58,
Issue. 5,
p.
377.
Bastier, A.
Maitournam, M.H.
Roger, F.
and
Dang Van, K.
2008.
Modelling of the residual state of friction stir welded plates.
Journal of Materials Processing Technology,
Vol. 200,
Issue. 1-3,
p.
25.
Lopez, R.
Ducoeur, B.
Chiumenti, M.
de Meester, B.
and
Agelet de Saracibar, C.
2008.
Modeling Precipitate Dissolution in Hardened Aluminium Alloys using Neural Networks.
International Journal of Material Forming,
Vol. 1,
Issue. S1,
p.
1291.
Scialpi, A.
De Giorgi, M.
De Filippis, L.A.C.
Nobile, R.
and
Panella, F.W.
2008.
Mechanical analysis of ultra-thin friction stir welding joined sheets with dissimilar and similar materials.
Materials & Design,
Vol. 29,
Issue. 5,
p.
928.
Kamp, N.
Reynolds, A. P.
and
Robson, J. D.
2009.
Modelling of 7050 aluminium alloy friction stir welding.
Science and Technology of Welding and Joining,
Vol. 14,
Issue. 7,
p.
589.
Woo, W.
Choo, H.
Withers, P. J.
and
Feng, Z.
2009.
Prediction of hardness minimum locations during natural aging in an aluminum alloy 6061-T6 friction stir weld.
Journal of Materials Science,
Vol. 44,
Issue. 23,
p.
6302.
Dattoma, V.
De Giorgi, M.
and
Nobile, R.
2009.
On the Residual Stress Field in the Aluminium Alloy FSW Joints.
Strain,
Vol. 45,
Issue. 4,
p.
380.
Babu, S S
2009.
Thermodynamic and kinetic models for describing microstructure evolution during joining of metals and alloys.
International Materials Reviews,
Vol. 54,
Issue. 6,
p.
333.
Threadgill, P L
Leonard, A J
Shercliff, H R
and
Withers, P J
2009.
Friction stir welding of aluminium alloys.
International Materials Reviews,
Vol. 54,
Issue. 2,
p.
49.
Zadpoor, Amir Abbas
Sinke, Jos
and
Benedictus, Rinze
2010.
Global and Local Mechanical Properties and Microstructure of Friction Stir Welds with Dissimilar Materials and/or Thicknesses.
Metallurgical and Materials Transactions A,
Vol. 41,
Issue. 13,
p.
3365.
Hersent, E.
Driver, J. H.
Piot, D.
and
Desrayaud, C.
2010.
Integrated modelling of precipitation during friction stir welding of 2024-T3 aluminium alloy.
Materials Science and Technology,
Vol. 26,
Issue. 11,
p.
1345.
Zettler, R.
2010.
Friction Stir Welding.
p.
42.
Carron, Denis
Gauthier, Elise
Pouvreau, Cedric
Rogeon, Philippe
Pilvin, Philippe
Soigneux, Jacky
and
Lety, Thomas
2011.
Modelling Age Hardening CuCr1Zr Electrode Alloy Softening during Resistance Spot Welding.
Solid State Phenomena,
Vol. 172-174,
Issue. ,
p.
857.
Nourani, Mohamadreza
Milani, Abbas S.
and
Yannacopoulos, Spiro
2011.
Taguchi Optimization of Process Parameters in Friction Stir Welding of 6061 Aluminum Alloy: A Review and Case Study.
Engineering,
Vol. 03,
Issue. 02,
p.
144.