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Development of Welding Flux to Reduce Hydrogen Embrittlement in Weld Zone
Sunghoon Chung, Il Sohn, Hong-Chul Jeong
JWJ. 2019;37(1):15-20.   Published online 2019 February 20    DOI: https://doi.org/10.5781/JWJ.2019.37.1.2

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Development of Welding Flux to Reduce Hydrogen Embrittlement in Weld Zone
Journal of Welding and Joining. 2019;37(1):15-20   Crossref logo
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Formation of the weld metal zone
Fundamentals of Welding Metallurgy. 1991;68-96   Crossref logo
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Solidification of the weld metal zone
Fundamentals of Welding Metallurgy. 1991;97-121   Crossref logo
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Susceptibility of electrolytically galvanized dual-phase steel sheets to liquid metal embrittlement during resistance spot welding
Welding in the World. 2018;62(5):1031-1037   Crossref logo
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Low heat input gas metal arc welding for dissimilar metal weld overlays part III: hydrogen-assisted cracking susceptibility
Welding in the World. 2019;   Crossref logo
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Manifestations of Hydrogen Embrittlement
Fundamentals of Hydrogen Embrittlement. 2016;103-135   Crossref logo
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Low-hydrogen, low-nitrogen, low-oxygen welding flux
International Journal of Hydrogen Energy. 1986;11(9):611-611   Crossref logo
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Development of gas shielded arc welding process to achieve a very low diffusible hydrogen content in weld metals
Welding in the World. 2016;60(3):383-392   Crossref logo
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IIW commission II round robin of flux analysis
Welding in the World. 2016;60(3):373-382   Crossref logo
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Analysis on Development of Transverse - Sectioned Weld Zone using FEM Verified with Multipulsed Resistance Seam Welding
The Journal of Engineering Research [TJER]. 2013;10(2):78   Crossref logo
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