Research Status and Development Trend of Magnetically Controlled Welding Technology

Article Preview

Abstract:

The basic principle and the characteristics of magnetically controlled welding technology are introduced in this paper. The specific applications of domestic and foreign magnetically controlled welding technology in welding process are comprehensively analyzed at the moment, including the effect rule of external magnetic field on arc shape, metal droplet transfer, molten pool, weld microstructure, mechanical properties. And the key problems needing to be solved are deeply investigated. The developments of magnetically controlled welding technology in the future are also forecasted.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 712-715)

Pages:

584-589

Citation:

Online since:

June 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Zhengjun Liu, Xiaobo Wen and Yunhai Su: Journal of Shenyang University of Technology (in Chinese), Vol.34 (2012) pp.258-262.

Google Scholar

[2] Bo Hong, Jintao Ma and Xiangwen Li: Transactions of The China Welding Institution (in Chinese), Vol.33 (2012) pp.87-90.

Google Scholar

[3] Yunhai Su, Lecheng Li and Zhengjun Liu: Transactions of The China Welding Institution (in Chinese), Vol.33 (2012) pp.33-37.

Google Scholar

[4] Zhongguo Liu: Baosteel Technology (in Chinese), No.4 (2007) pp.53-56.

Google Scholar

[5] Haidong Chen, Tiejun Ma and Yong Zhang: Transactions of The China Welding Institution (in Chinese), Vol. 33 (2012) pp.109-112.

Google Scholar

[6] Xinge Zhang,Qun Wang, and Liqun Li: Materials Review (in Chinese),Vol.23 (2009) pp.39-42.

Google Scholar

[7] Jie Chen, Xiaoming Wang and Zhenbing Zhang: Welding Machine (in Chinese), Vol. 33 (2012) pp.47-50.

Google Scholar

[8] Boldyrev, Birzhev and Chernykn: Welding International, Vol.6 (1992) pp.812-814.

Google Scholar

[9] Shuyuan Jiang, Xuewu Zhang and Huanming Chen: Journal of Shanghai Jiao-tong University (in Chinese),Vol.44 (2010) pp.89-91.

Google Scholar

[10] J Luo, H B Leng and J F Xiang: Study on the new joining technology of aluminum alloy / Q235 steel dissimilar metal by the longitudinal electromagnetic hybrid TIG welding-brazing method[C]. Conference Publications, No.7 (2011) pp.1698-1701.

DOI: 10.1109/mace.2011.5987283

Google Scholar

[11] Infianow P A: Welding Production, No.1 (1983) pp.34-35.

Google Scholar

[12] Nakura Ito: Quarterly Journal of the Japan Welding Society, Vol.27 (2000) pp.40-50.

Google Scholar

[13] Yanjin Shen: Hot Working Technology (in Chinese),Vol.41 (2012) pp.183-184.

Google Scholar

[14] Sheng Zhu, Qiwei Wang and Fengliang Yin: Transactions of Materials and Heat Treatment (in Chinese),Vol.32 (2011) pp.23-27.

Google Scholar

[15] Basler, Erdmann-Jesnitzer F and Rehfeldt D: Welding And Metal Fabrication, Vol.42 (1974) pp.223-224.

Google Scholar

[16] Dianchen Yang: The Application of Magnetic controlling technology for High Speed TIG Welding (in Chinese), Shenyang University of Technology (Shenyang, 2010) pp.25-26.

Google Scholar

[17] Shunshan Zhang,Yong Zou and Zengda Zou: Transactions of The China Welding Institution (in Chinese), Vol.32 (2011) pp.69-73.

Google Scholar

[18] Oeper G M, Eagar T W and Szekel Y J: Welding Journal, Vol.62 (1983) pp.307-321.

Google Scholar

[19] Xianqing Yin, Jianjun Gou, Jianxun Zhang and Jiangtao Sun: Journal of Physics D: Applied Physics, Vol.45 (2012) pp.1-13.

Google Scholar

[20] Lindenau D, Ambrosy G and Berger P: Effects of magnetically supported laser beam welding of aluminum alloys[ C] / / 20th Inter national Congress on Applications of Laser sand Electro-Optics. Jackson will, USA, 2001.

DOI: 10.2351/1.5059842

Google Scholar

[21] Ambrosy G, Berger P and Huegel H: SPI E,Vol.51 (2003) pp.596-603.

Google Scholar

[22] Garabedian H, R. F.: Crystal Growth, Vol.22(1974) pp.188-192.

Google Scholar

[23] Kui Zhang, Guojun Liu and Yongzhong Zhang: Rare Metals (in Chinese), Vol.22 (1998) pp.447-449.

Google Scholar

[24] Hellawell A: Grain evolution in conventional castings [A]. Proceedings of the 4th International Conference on Semi-solid Processing of Alloys and Composites. Sheffield, Vol.37 (1996) pp.60-65.

Google Scholar

[25] Fan Z, Fang X and Ji S: Material Science and Engineering A, Vol.4 (2005) pp.298-306.

Google Scholar

[26] Yunhai Su, Lecheng Li and Zhengjun Liu: Transactions of The China Welding Institution (in Chinese), Vol.33 (2012) pp.33-37.

Google Scholar

[27] Lin Zong, Yunhai Su and Zhengjun Liu: Transactions of The China Welding Institution (in Chinese), Vol.33 (2012) pp.61-65.

Google Scholar

[28] Qi Shen,YongBing Li, ZhongQin Lin and GuanLong Chen: Journal of Manufacturing Science and Engineering, Vol.133 (2011) pp.1-7. .

Google Scholar

[29] Dayong Li: Development of Sync-Welding-Controlling Magnetic Device (in Chinese), Shenyang University of Technology (Shenyang, 2009) pp.29-30.

Google Scholar

[30] Andrew T, Joe B and Fred D: Transactions on Applied Superconductivity, Vol.17 (2007) pp.2295-2298.

Google Scholar

[31] Asai S: Science and Technology of Advanced Materials, Vol.1 (2000) pp.191-200.

Google Scholar