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A new methodology for investigating the weld joint microstructure and micro-hardness of the austenitic stainless steel clad plate made by SMAW/GTAW multi-pass welding process: part III – clad layer case study

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Journal of Adhesion Science and Technology 39 (9) 1427 (2025)
https://doi.org/10.1080/01694243.2025.2450277

Effect of Welding Microstructure on Stress Relaxation Cracking Studied by Controlled Residual Stress Generation in a 316L(N) Austenitic Stainless Steel

Baptiste Py-Renaudie, Diogo Goncalves, Serge Pascal, Mohamed Sennour, Vladimir A. Esin and Thilo F. Morgeneyer
Metallurgical and Materials Transactions A 54 (12) 4650 (2023)
https://doi.org/10.1007/s11661-023-07182-x

Continuum Damage Mechanics Modeling of High-Temperature Flaw Propagation: Application to Creep Crack Growth in 316H Standardized Specimens and Nuclear Reactor Components

Antonio M. Recuero, Markian Petkov, Benjamin W. Spencer and Pierre-Alexandre Juan
Journal of Pressure Vessel Technology 145 (5) (2023)
https://doi.org/10.1115/1.4062953

Non-Conservatism of ASME BPVC Section III Division 5 Isochronous Stress–Strain Curves for 316H Stainless Steel at Low Stresses

Markian Petkov, George A. Young and Pierre-Alexandre Juan
Journal of Pressure Vessel Technology 144 (6) (2022)
https://doi.org/10.1115/1.4054622

Theoretical and Experimental study of Creep Damage in Alloy 800 at High Temperature

L. Huang, M. Sauzay, Y. Cui and P. Bonnaille
Materials Science and Engineering: A 140953 (2021)
https://doi.org/10.1016/j.msea.2021.140953

Intergranular damage in AISI 316L(N) austenitic stainless steel at 600°C: Pre-strain and multiaxial effects

Q. Auzoux, L. Allais, C. Caës, et al.
Nuclear Engineering and Design 235 (21) 2227 (2005)
https://doi.org/10.1016/j.nucengdes.2005.05.002