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Cited article:

A detailed methodology for assessment of the uncertainty associated with ductile-to-brittle transition temperature obtained via Charpy impact testing

Rafael Marques Borges Pacheco, Daniel Correia Freire Ferreira and Rosenda Valdés Arencibia
Measurement 264 120261 (2026)
https://doi.org/10.1016/j.measurement.2025.120261

Machine learning-based correlation of charpy impact properties between sub-sized and standard-sized specimens for nuclear structural materials

Yugandhar Kasala Sreenivasulu, Isshu Lee, John W. Merickel, Fei Xu, Yalei Tang, Joshua E. Rittenhouse, Aleksandar Vakanski and Rongjie Song
Scientific Reports 16 (1) (2026)
https://doi.org/10.1038/s41598-026-47605-4

Mechanical properties and microstructural investigation of a quenched and tempered 2.25Cr-1Mo alloy for very thick forgings applications

Lingtao Sun, Bernard Marini and Pierre Joly
Metallurgical Research & Technology 122 (4) 405 (2025)
https://doi.org/10.1051/metal/2025035

Algorithms to Estimate the Ductile to Brittle Transition Temperature, Upper Shelf Energy, and Their Uncertainties for Steel Using Charpy V-Notch Shear Area and Absorbed Energy Data

Nathaniel T. Switzner, Joel Anderson, Lanya Ali Ahmed, Michael Rosenfeld and Peter Veloo
Metals 13 (5) 877 (2023)
https://doi.org/10.3390/met13050877

Investigation of fracture behavior of typical refractory materials up to service temperatures

Erwan Brochen, Christian Dannert, Juliane Paul and Olaf Krause
International Journal of Ceramic Engineering & Science 4 (2) 68 (2022)
https://doi.org/10.1002/ces2.10123

Charpy V notch tests – Risks associated with testing with 3 samples

Michel Huther and Henri-Paul Lieurade
Matériaux & Techniques 109 (1) 105 (2021)
https://doi.org/10.1051/mattech/2021017