2000•QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETYOpen access

Study on High Speed Fillet Welding by Tandem Arc MAG Process.

Nobuyuki Okui, Susumu OHGA, Tadao Saitoh, Tomoyuki Suzuki, Shigeyoshi Maki, Hiroyuki Honma

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Abstract

Welded structures are composed of a large amount of the horizontal fillet joint whereby high speed fillet welding significantly influences on improvement of productivity. The "Tandem Arc MAG Process" here referred to is a newly developed process which realizes high speed horizontal fillet welding without any undercut by means of holding a stagnant molten metal formed between two electrodes. The authors have prepared the model of a molten metal pool, and researched relations among the displacement of molten metal and solidification point along a toe of weld metal. This research has been accompanied by studies on a distance between electrodes where stagnant molten metal is stably maintained as well as on current distribution to the leading and trailing electrodes. At the same time, a welding wire has been developed, that has excellent blowhole resistance in high speed welding. As a result, high quality welds have been obtained in a welding speed about 3 times as high as that of the conventional process.The system is being applied to field work and proved that a process capability is improved to a great extent, thus the system is contributing greatly to productivity.

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What this paper is about

Welded structures are composed of a large amount of the horizontal fillet joint whereby high speed fillet welding significantly influences on improvement of productivity. The "Tandem Arc MAG Process" here referred to is a newly developed process which realizes high speed horizontal fillet welding without any undercut by means of holding a stagnant molten metal formed between two electrodes. The authors have prepared the model of a molten metal pool, and researched relations among the displacement of molten metal and solidification point along a toe of weld metal. This research has been accompanied by studies on a distance between electrodes where stagnant molten metal is stably maintained as well as on current distribution to the leading and trailing electrodes. At the same time, a welding wire has been developed, that has excellent blowhole resistance in high speed welding. As a result, high quality welds have been obtained in a welding speed about 3 times as high as that of the conventional process.The system is being applied to field work and proved that a process capability is improved to a great extent, thus the system is contributing greatly to productivity.

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Available abstract

Welded structures are composed of a large amount of the horizontal fillet joint whereby high speed fillet welding significantly influences on improvement of productivity. The "Tandem Arc MAG Process" here referred to is a newly developed process which realizes high speed horizontal fillet welding without any undercut by means of holding a stagnant molten metal formed between two electrodes. The authors have prepared the model of a molten metal pool, and researched relations among the displacement of molten metal and solidification point along a toe of weld metal. This research has been accompanied by studies on a distance between electrodes where stagnant molten metal is stably maintained as well as on current distribution to the leading and trailing electrodes. At the same time, a welding wire has been developed, that has excellent blowhole resistance in high speed welding. As a result, high quality welds have been obtained in a welding speed about 3 times as high as that of the conventional process.The system is being applied to field work and proved that a process capability is improved to a great extent, thus the system is contributing greatly to productivity.

Key concepts: Fillet (mechanics), Welding, Upset welding, Materials science, Arc blow, Undercut, Electric resistance welding, Arc welding

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