Feasibility of surface-coated friction stir welding tools to join AISI 304 grade austenitic stainless steel

Author:

Lakshminarayanan A.K.,Ramachandran C.S.,Balasubramanian V.

Publisher

Elsevier BV

Subject

Metals and Alloys,Mechanical Engineering,Ceramics and Composites,Computational Mechanics

Reference16 articles.

1. Packer S, Nelson T, Sorensen C, Steel R, Matsunaga M. Tool and equipment requirements for friction stir welding ferrous and other high melting temperature alloys. Proceedings of Fourth International Symposium on Friction Stir Welding, May 2003, 14–16, (Park City, UT), TWI, paper on CD.

2. Boride formation induced by pcBN tool wear in friction-stir-welded stainless steels;Park;Metall Mater Trans A,2009

3. Development of a cobalt-based alloy FSW tool for high-softening-temperature materials: in friction stir welding and processing VI;Sato,2011

4. Ouyang JH, Mei H, Valant M, Kovacevic R. Application of laser-based additive manufacturing to Production of tools for friction stir welding. In the proceedings of Thirteenth Solid Freeform Fabrication Symposium – an additive manufacturing conference, Austin, TX. University of Texas; August 2002, 5–7: 65 – 72.

5. Multiobjective optimization of atmospheric plasma Spray process parameters to Deposit yttria-stabilized zirconia coatings using response surface methodology;Ramachandran;J Therm Spray Technol,2011

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