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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

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Effect of Weld Heat Input Modeling and the Material Hardening Model for Gas Tungsten Arc Welding Finite Element Analysis
Journal of Welding and Joining. 2021;39(3):254-268   Crossref logo
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Comprehensive analysis of gas tungsten arc welding technique for Ni-base weld overlay
Advanced Welding and Deforming. 2021;105-126   Crossref logo
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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
Metallurgical and Materials Transactions A. 2008;39(11):2698-2710   Crossref logo
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Effect of process parameters on arc behavior and weld formation in weaving gas tungsten arc welding
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Effect of plasma heat source characteristics on nitrogen absorption in gas tungsten arc weld metal
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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
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Application of Low Heat Input Gas Metal Arc Welding for Corrosion Resistant Weld Overlays
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Low heat input gas metal arc welding for dissimilar metal weld overlays part III: hydrogen-assisted cracking susceptibility
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