Impact of Backing Plate and Thermal Boundary Conditions for High-Speed Friction Stir Welding of 25-mm Thick Aluminum Alloy 7175-T79

Author:

Das Hrishikesh,Reza-E-Rabby Md.ORCID,Whalen Scott A.,Upadhyay Piyush,Grant Glenn J.

Funder

Office of Fossil Energy and Carbon Management

Publisher

Springer Science and Business Media LLC

Reference34 articles.

1. Alikin, R., Basovich, V., Gelfgat, M., Tikhonov, V., Chizhikov, V (2007) Russian aluminum alloys for ultra deep water production risers, international conference on subsea technologies, St. Petersburg, Russia.

2. Gelfgat, M., Grebtsov, N., Podrazhansky, A., Vygodsky, B., Tikhonov, V., Shaposhnikov, V., Chizhikov, V (2004) High-Strength Aluminun Alloys for Deepwater Riser Applications, Offshore Technology Conference, OTC, pp. OTC-16185-MS.

3. Sinyavskii, V., & Kalinin, V. (2005). Marine corrosion and protection of aluminum alloys according to their composition and structure. Protection of metals, 41(4), 317–328.

4. Thomas, W.M., Nicholas, E.D., Needham, J.C., Murch, M.G., Temple-Smith, P., Dawes, C.J., (1993) Improvements relating to friction welding (friction stir welding and friction plunge welding). The Welding Institute, PCT World, Patent Number 0653265A2, in: E.P. Office (Ed.)

5. Mishra, R.S., Komarasamy, M., (2016) Friction stir welding of high strength 7XXX aluminum alloys, Butterworth-Heinemann

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