Study on Residual Stress by Neutron Diffraction in SM570-TMC Welded by Flux-Cored Wires Containing Different Nickel
Author:
Affiliation:
1. Metallurgy & Materials Eng. Dept., Universitas Indonesia
2. National Nuclear Energy Agency, Serpong, Indonesia
3. Joining & Welding Research Institute, Osaka University
Publisher
Japan Welding Society
Subject
Metals and Alloys,Surfaces, Coatings and Films,Mechanical Engineering,Mechanics of Materials
Link
https://www.jstage.jst.go.jp/article/qjjws/38/2/38_116s/_pdf
Reference6 articles.
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2. 7) D.G. Carr. M.I. Ripley, T.M. Holden, D.W. Brown and S.C. Vogel, Residual stress measurements in a zircaloy-4 weld by neutron diffraction, Acta Materialia, 52 (2004), 4083-4091.
3. 8) M.E. Kartal, Y.H. Kang, A.M. Korsunsky, A.C.F. Cocks and J.P. Bouchard, The influence of welding procedure and plate geometry on residual stresses in thick components, Int. J. of Solids and Structures, 80 (2016), 420-429.
4. 9) S.V. Pearce and V.M. Linton, Neutron diffraction measurement of residual stress in high strength, highly restrained, thick section steel welds, Physica B, 385-386 (2006), 590-593.
5. 10) S.H. Kim, J.B. Kim and W.J. Lee, Numerical prediction and neutron diffraction measurement of the residual stresses for a modified 9Cr-1Mo steel weld, J. of Mater. Proc.Tech. 209 (2009), 3905-3913.
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