Behavior and Hot Cracking Susceptibility of Filler Metal 52 M (ERNiCrFe-7A) Overlays on Cast Austenitic Stainless Steel Base Materials

Author:

McCracken Steven L.,Smith Richard E.

Publisher

Springer Berlin Heidelberg

Reference11 articles.

1. N.G. Cofie, R.E. Smith, R.L. Bax, C.S. Lohse, B. Hermanns, J. Valsvig, L.D. Yepez, and D. Parker, (2008) Effectiveness of Stainless Steel Buffer Layer to Address Hot Cracking During Weld Overlay Repair of Dissimilar Metal Alloy 82/182 Welds with Stainless Steel Piping. Proceedings ASME PVP Conf., July 27–31, Chicago, IL, Paper No. PVP2008-61411.

2. D.W. Gandy, R.E. Smith, S.J. Findlan, and W.J. Childs, (August 1992), A Better Way to Control GTA Weld Dilution, Welding Design & Fabrication, pp. 41–43.

3. J.C. Lippold, (2009) Private Correspondence, Catawba Root Cause Analysis, June 8, 2009.

4. S.L. McCracken, B.T. Alexandrov, J.C. Lippold, J.W. Sowards, and A.T. Hope, (2010) Hot Cracking Study of High Chromium Nickel-Base Weld Filler Metal 52MSS (ERNiCrFe-13) for Nuclear Applications, Proceedings ASME PVP Conf., July 18–22, 2010, Bellevue, WA, Paper No. PVP2010-25787.

5. J.N. DuPont, C.V. Robino, J.R. Michael, M.R. Notis, and A.R. Marder, (1998) Solidification of Nb-Bearing Superalloys: Part I. Reaction Sequences. Metall. Mater. Trans. A, 29A:2797–2806.

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