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Effect of Weld Heat Input Modeling and the Material Hardening Model for Gas Tungsten Arc Welding Finite Element Analysis |
Chang-Young Oh, Yongjoon Kang, Seung-Gun Lee, Jun-Young Jeon, Sung-Sik Kang |
J Weld Join. 2021;39(3):254-268. Published online 2021 June 7 DOI: https://doi.org/10.5781/JWJ.2021.39.3.4 |
Effect of Weld Heat Input Modeling and the Material Hardening Model for Gas Tungsten Arc Welding Finite Element Analysis Comprehensive analysis of gas tungsten arc welding technique for Ni-base weld overlay Development of a Three-Dimensional Heat-Transfer Model for the Gas Tungsten Arc Welding Process Using the Finite Element Method Coupled with a Genetic Algorithm–Based Identification of Uncertain Input Parameters Low heat input gas metal arc welding for dissimilar metal weld overlays part I: the heat-affected zone Effect of process parameters on arc behavior and weld formation in weaving gas tungsten arc welding Low heat input gas metal arc welding for dissimilar metal weld overlays part II: the transition zone Effect of plasma heat source characteristics on nitrogen absorption in gas tungsten arc weld metal Effect of heat input and weld chemistry on mechanical and microstructural aspects of double side welded austenitic stainless steel 321 grade using tungsten inert gas arc welding process Application of Low Heat Input Gas Metal Arc Welding for Corrosion Resistant Weld Overlays Low heat input gas metal arc welding for dissimilar metal weld overlays part III: hydrogen-assisted cracking susceptibility |
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