Shinichi Tashiro
The Keyhole Plasma Arc Welding (KPAW) process utilizes arc plasma highly constricted by a water-cooled cupper nozzle to produce great arc pressure for opening a keyhole in the weld pool, achieving full penetration to the thick plate. However, advanced control of welding is known to still be difficult due to the complexity of the process mechanism, in which thermal and dynamic interactions among the arc, keyhole, and weld pool are critically important. In KPAW, two large eddies are generally formed in the weld pool behind the keyhole by plasma shear force as the dominant driving force. These govern the heat transport process in the weld pool and have a strong influence on the weld pool formation process. The weld pool flow velocity is much faster than those of other welding processes such as Tungsten Inert Gas (TIG) welding and Gas Metal Arc (GMA) welding, enhancing the heat transport to lower the weld pool surface temperature. Since the strength and direction of this shear force strongly depend on the keyhole shape, it is possible to control the weld pool formation process by changing the keyhole shape by adjusting the torch design and operating parameters. If the lower eddy is relatively stronger, the heat transport to the bottom side increases and the penetration increases. However, burn-through is more likely to occur, and heat transport to the top side decreases, causing undercut. In order to realize further sophistication of KPAW, a deep theoretical understanding of the process mechanism is essential. In this article, the recent progress in studies regarding the interaction mechanism of arc, keyhole, and weld pool in KPAW.
@article{7c9414b4-7580-40d5-8770-69ab9c017624,
title={Interaction Mechanism of Arc, Keyhole, and Weld Pool in Keyhole Plasma Arc Welding: A Review},
author={Shinichi Tashiro},
year={2024},
language={English}
}TY - JOUR TI - Interaction Mechanism of Arc, Keyhole, and Weld Pool in Keyhole Plasma Arc Welding: A Review AU - Shinichi Tashiro PY - 2024 LA - English ER -
Osvaldo Pavez, Pablo Herrera
Copper slag flotation was studied on an industrial scale at a concentrator plant in the region of Atacama, Chile. This study consisted of the physical
Min Chen, Katri Avarmaa
The distributions of precious metals (gold, silver, platinum, and palladium) between copper matte and silica-saturated FeOx-SiO2/FeOx-SiO2-Al2O3/FeOx-
Dhiren K. Pradhan, David C. Moore
Silicon microelectronics, consisting of complementary metal oxide semiconductor (CMOS) technology, have changed nearly all aspects of human life from
Amin Rezaeizadeh, Silvia Mastellone
Power electronics converters are key enablers in the global energy transition for power generation, industrial and mobility applications; they convert
Chendan Li, Muzaidi Othman
The decarbonization of the marine sector is critical for achieving climate action goals, leading to innovations in energy systems influenced by polici
Mustafa Manap, Srete Nikolovski
The dependability of power electronics systems, such as three-phase inverters, is critical in a variety of applications. Different types of failures t