Characterization of the Interface of an Alloy 625 Overlay on Steels Using Nanoindentation

Author:

Dai Tao,Lippold John

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference22 articles.

1. NACE MR0175/ISO 15156-2: 2009, Petroleum and Natural Gas Industries-Materials for Use in H2S-Containing Environments in Oil and Gas Production-Part 2: Cracking-Resistant Carbon and Low Alloy Steels and the Use of Cast Iron. in International Standard, NACE International/ISO2001, 2003, pp. 17–44.

2. B.T. Alexandrov, J.C. Lippold, J.W. Sowards, A.T. Hope, and D.R. Saltzmann, Fusion Boundary Microstructure Evolution Associated with Embrittlement of Ni-Base Alloy Overlays Applied to Carbon Steel, Weld. World, 2013, 57, p 39–53

3. T. Dai and J.C. Lippold, Tempering Behavior of Fusion Boundary Region of Alloy 625 Weld Overlay on 2.25Cr-1Mo Steel, Weld. J., 2017, 96, p 467s–480s

4. T. Dai and J.C. Lippold, Tempering Behavior of the Fusion Boundary Region of Alloy 625 Weld Overlay on 8630 Steel, Weld. World, 2018, 62, p 535–550

5. W.C. Oliver and G.M. Pharr, An Improved Technique for Determining Hardness and Elastic Modulus Using Load and Displacement Sensing Indentation Experiments, J. Mater. Res., 1992, 7(6), p 1564–1583

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