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Weldability Evaluation of GMAW and GTAW for Al-6.7 wt.% Mg Alloy
Taehoon Kang, Jiyoung YU, Young-Min Kim, Insung Hwang, Seung Hwan Lee, Dong-Yoon Kim
JWJ. 2021;39(5):471-479.   Published online 2021 October 25    DOI: https://doi.org/10.5781/JWJ.2021.39.5.2

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Weldability Evaluation of GMAW and GTAW for Al-6.7 wt.% Mg Alloy
Journal of Welding and Joining. 2021;39(5):471-479   Crossref logo
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TEM study of continuous precipitation in Mg–9 wt%Al–1 wt%Zn alloy
Acta Materialia. 2000;48(8):1775-1787   Crossref logo
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The Evaluation on Corrosion Resistance and Dross Formation of Zn–23 wt% Al–0.3 wt% Si–x wt% Mg Alloy
Coatings. 2019;9(3):199   Crossref logo
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Microstructure Characteristic of AZ31/7005 Joints by GTAW with Filler Wire of Mg-Al Alloy
Advanced Materials Research. 2014;1004-1005:168-171   Crossref logo
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Age hardening in a Mg-9 wt.% Al alloy
Acta Metallurgica. 1968;16(2):141-152   Crossref logo
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Influence of Trace Addition of Ag on the Weldability of Al-Zn-Mg-Cu-Zr Base 7010 Alloy
Materials Science Forum. 2002;396-402:1665-1670   Crossref logo
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Comments on “age hardening in a Mg-9 Wt.% Al alloy”
Scripta Metallurgica. 1968;2(9):477-479   Crossref logo
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The effect of scandium on the microstructure, mechanical properties and weldability of a cast Al–Mg alloy
Acta Materialia. 2002;50(17):4275-4292   Crossref logo
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Hydrogen-induced gas porosity formation in Al–4.5 wt% Cu–1.4 wt% Mg alloy
Journal of Materials Science. 2013;48(15):5342-5353   Crossref logo
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Strain-rate dependence of microstructure and superplasticity of an Al–16 wt.% Si–5 wt.% Fe–0.9 wt.% Cu–0.4 wt.% Mg–0.9 wt.% Zr alloy fabricated by powder metallurgy
Materials Letters. 2000;45(2):86-90   Crossref logo
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