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J Weld Join > Volume 31(6); 2013 > Article
Journal of KWJS 2013;31(6):84-89.
DOI: https://doi.org/10.5781/KWJS.2013.31.6.84    Published online January 21, 2014.
Effects of High Current and Welding Wire Diameter on the Magnesium Vaporization and Mechanical Properties of Al5083 Arc Welds
Heimi Kwon *, Chul-ho Park **, In-Pyo Hong ***, Namhyun Kang **
Correspondence:  Namhyun Kang ,
Email: nhkang@pusan.ac.kr
Abstract
The demand of LNG tank and the constituting material, i.e., the Al5083 thick plate, increased due to the rapid growth LNG market. To weld the Al5083 thick plate, the gas metal arc welding (GMAW) of high current is necessary to increase manufacturing productivity incurred by the multi pass welding. However, the arc welding vaporizes the volatile element such as magnesium (Mg). This phenomenon changes the Mg composition of the weld metal and the mechanical properties. The study investigated the weldability of Al5083 alloys after conducting high current GMAW. The Al5083 alloy was welded by using different size of welding wires and high current (800-950A). As the arc current increased from 800A to 950A, the mechanical strength decreased and the secondary dendrite arm spacing (SDAS) increased. Even though the arc current increased SDAS, the mechanical strength decreased due to the Mg loss in the weldment. The large diameter of welding wire decreased the dilution of the weld, therefore increasing the Mg content and the strength of the weld. For the reason, the content of Mg in welds was a major parameter to determine the mechanical property for the high current GMAW. For the arc current between 800A and 950A, the yield strength of the weldments showed a relationship with the weight percent of Mg content (XMg): Y.S = 27.9(XMg)-11.
Key Words: Al5083, Weldability, Microstructure, Mg vaporization, Mechanical property


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