Leon Magli´ c, Dejan Mari´ c
Metal inert gas (MIG) welding is one of the processes most commonly used for joining metals, especially for joining aluminum and its alloys. The application of a pulsed current in an electric arc allows better controllability of the molten droplets and the arc transition, which subsequently leads to welds with characteristic flaky joints of better quality. In this paper, the optimization of parameters for welding aluminum alloys using the synchropulse welding process is investigated. By observing the input variables that have the greatest influence on the change in appearance of the welding current characteristics (delta wire feed from 0.1 to 6.0 m/min, frequency F from 0.5 to 3 Hz, duty cycle from 10% to 90%), it is possible to perform an optimization to achieve the desired output values. The output variables of the experiments are defined as insufficient/excessive throat thickness (mm), depth of penetration (mm), and weld width (mm); and for the desired quality of the welded joint the most acceptable range of its values is selected, the numerical optimization implementation. The experiment has shown that the delta wire feed has the greatest effect on the observed properties, while the influence of frequency F and duty cycle is somewhat smaller, but the factors responsible for the observed output properties are still significant.
@article{74c541b3-7099-4f5c-87e7-6f04e35fda83,
title={Optimization of Synchropulsed MIG Welding Process Parameters for Welding of AW 5083 Sheets},
author={Leon Magli´ c and Dejan Mari´ c},
year={2022},
language={English}
}TY - JOUR TI - Optimization of Synchropulsed MIG Welding Process Parameters for Welding of AW 5083 Sheets AU - Leon Magli´ c AU - Dejan Mari´ c PY - 2022 LA - English ER -
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