Design on Cleaning Device for Slag of Narrow Gap Submerged Arc Welding

Article Preview

Abstract:

At present, the Narrow Gap Submerged Arc Welding is an advanced welding technology. As the weld is very deep and narrow, the slag is difficult to clean and will have impact on the quality of welding seam. Therefore, a new kind of narrow gap submerged arc welding slag cleaning device is designed to clean the welding slag. It is consisted of welding walking tractor, height adjuster, slag masher, slag cleaner and slag collector. The narrow gap submerged arc welding slag removal device used for the welding process can realize the cleaning that manpower cannot finish. It is a kind of time-saving, energy-saving and high efficient welding cleaning method.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

404-407

Citation:

Online since:

December 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Guodong Zhan, Fuju Zhang and Danxia Piao. Progress and prospect of narrow gap submerges arc-welding. Electic Welding Machine. Vol. 37 No. 2 (2007), pp.28-29.

Google Scholar

[2] Yufen Gao. Deep crevasse in narrow gap submerged-arc welding hot slag of technology. Welding technique. Vol. 37 No. 2 (2008), pp.64-65.

Google Scholar

[3] Fuju Zhang, Chuanhong Luo. Narrow gap welding and its new development. Welding Technology. Vol. 29 No. 6(2000), pp.33-36.

Google Scholar

[4] Gabriel Merle. Narrow-Groove Mechanized Arc Welding-Advanced Welding Techniques. Energy engineering international BBS on welding. France. IFWT (2005), pp.5-12.

Google Scholar

[5] Wenming Zhang, Jiuyang Bai, Qiang Xu. A Dedign of Swing Device for Narrow Gap Submerged Arc Welding. The hot working processes , Casting Forging Welding. (2008), pp.194-196.

Google Scholar

[6] Wengming Zhang, Wei Li, Jiuyang Bai. Design on Narrow Gap Submerged Arc Welding Gun. The hot working processes. Vol. 42 No. 5 (2013), pp.211-212.

Google Scholar