Solidification Cracking Behavior in Austenitic Stainless Steel Laser Welds (Part 1) - Evaluation of Solidification Cracking Susceptibility by Laser Beam Welding Varestraint Test -
Eun-Joon Chun, Su-Jin Lee, Jeong Suh, Namhyun Kang, Kazuyoshi Saida
J Weld Join. 2016;34(5):54-60.   Published online 2016 Oct 30     DOI: https://doi.org/10.5781/JWJ.2016.34.5.54
Citations to this article as recorded by Crossref logo
Effects of Shielding Gases on the Weldability of Laser Welded Austenitic Stainless Steel
Yeonho Kwak, Seung Hwan Lee, Minjung Kang
Journal of Welding and Joining.2022; 40(6): 525.     CrossRef
T-joint Fillet Laser Welding of High-Strength Stainless Steel for Curtain Wall Frames
Gitae Park, Seunggab Hong, Kyongyun Yeau, Boyoung Jeong
Journal of Welding and Joining.2022; 40(6): 485.     CrossRef
Comparison of Hot Cracking Susceptibility of TIG and Laser Beam Welded Alloy 718 by Varestraint Testing
Pedro Alvarez, Lexuri Vázquez, Noelia Ruiz, Pedro Rodríguez, Ana Magaña, Andrea Niklas, Fernando Santos
Metals.2019; 9(9): 985.     CrossRef
Prediction of sigma-phase embrittlement and its influence on repair weldability for type 316FR stainless steel weld metals with different solidification modes
Eun−Joon Chun, Kazuyoshi Saida
Journal of Nuclear Materials.2018; 505: 212.     CrossRef
Microstructural Characterization of Surface Softening Behavior for Cu-Bearing Martensitic Steels after Laser Surface Heat Treatment
Eun-Joon Chun, Ahjin Sim, Min-Su Kim, Namhyun Kang
Metals.2018; 8(6): 470.     CrossRef
Hot Cracking of Ni-Cr-Fe Alloys: Test Methods and Metallurgical Effect
Sangwoo Nam, Cheolhee Kim, Young-Min Kim
Journal of Welding and Joining.2017; 35(5): 7.     CrossRef