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Optimization of Weld Parameters in Wire and Arc-Based Directed Energy Deposition of High Strength Low Alloy Steels

Le, V.T. and Mai, D.S. and Dang, V.T. and Dinh, D.M. and Cao, T.H. and Nguyen, V.A. (2023) Optimization of Weld Parameters in Wire and Arc-Based Directed Energy Deposition of High Strength Low Alloy Steels. Advances in Technology Innovation, 8 (1). pp. 1-11.

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Abstract

This paper aims to investigate the fabrication of high strength low alloy (HSLA) steels by wire and arc-based directed energy deposition (WADED). Firstly, the relationship between the process variables (including the travel speed-V, the current-C, and the voltage-U) and the geometrical characteristics of weld beads (including the bead height (BH), bead width (BW), and melting pool length (MPL)) was investigated. Secondly, the optimal process variables were identified using the desirability approach. The results indicate that voltage-U has the highest impact on BW and MPL, meanwhile the travel speed-V is the most impacting factor on BH. The optimal variables for the WADED process of HSAL steels are V = 0.3 m/min, C = 160 A, and U = 19 V. The component fabricated with the optimal variables is fully dense without spatters and defects, confirming the efficiency of the WADED process for HSLA steels. © by the authors. Licensee TAETI, Taiwan. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/).

Item Type: Article
Divisions: Research centers > Advanced Technology Center
Identification Number: 10.46604/AITI.2023.10658
Uncontrolled Keywords: Hsla steel; Optimal variables; Waded; Weld bead
URI: http://eprints.lqdtu.edu.vn/id/eprint/10753

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