Introduction into the electron beam welding of austenitic 321-type stainless steel

Author:

Yilbas B.S.,Sami M.,Nickel J.,Coban A.,Said S.A.M.

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Metals and Alloys,Computer Science Applications,Modelling and Simulation,Ceramics and Composites

Reference7 articles.

1. Y. Uratani, S. Kwi, G. Takans, M. Nayama, Application of electron beam welding to austenitic stainless steel BWR nuclear power plant components, Proc. Conf. on the Laser vs the Electron Beam in Welding, Cutting and Surface Treatment, State of the Art, San Diego, CA, 1985, pp. 71–85.

2. A. Kohyama, Y. Kohno, A. Hishinuma, Microstructural evolution under dual ion irradiation and in-reactor creep of type 316 stainless steel welded joints, J. Nucl. Mater. 212-1 Part B (1994) 1579–1584.

3. Effect of postweld treatment on weld metal impact toughness of a semi-austenitic Phh stainless steel;Sivaramakrishnan;Weld. J.,1994

4. Influence of electron beam focusing on the shape and depth of the weld;Kolenic;Weld. Res. Abroad,1993

5. V. Cihal, Intergranular Corrosion of Steels and Alloys, 1st ed., Elsevier, Amsterdam, 1984.

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