期刊文献+

Simultaneous observation of keyhole and weld pool in plasma arc welding with a single cost-effective sensor

Simultaneous observation of keyhole and weld pool in plasma arc welding with a single cost-effective sensor
下载PDF
导出
摘要 The dynamic behaviors of the keyhole and weld pool are coupled together in plasma arc welding, and the geometric variations of both the keyhole and the weld pool determine the weld quality. It is of great significance to simultaneously sense and monitor the keyhole and the weld pool behaviors by using a single low-cost vision sensor in plasma arc welding process. In this study, the keyhole and weld pool were observed and measured under different levels of welding current by using the near infrared sensing technology and the charge coupled device (CCD) sensing system. The shapes and relative position of weld pool and keyhole under different conditions were compared and analyzed. The observation results lay solid foundation for controlling weld quality and understanding the underlying process mechanisms. The dynamic behaviors of the keyhole and weld pool are coupled together in plasma arc welding, and the geometric variations of both the keyhole and the weld pool determine the weld quality. It is of great significance to simultaneously sense and monitor the keyhole and the weld pool behaviors by using a single low-cost vision sensor in plasma arc welding process. In this study, the keyhole and weld pool were observed and measured under different levels of welding current by using the near infrared sensing technology and the charge coupled device (CCD) sensing system. The shapes and relative position of weld pool and keyhole under different conditions were compared and analyzed. The observation results lay solid foundation for controlling weld quality and understanding the underlying process mechanisms.
出处 《China Welding》 EI CAS 2014年第4期8-12,共5页 中国焊接(英文版)
关键词 KEYHOLE weld pool plasma arc welding single vision sensor infrared sensing keyhole, weld pool, plasma arc welding, single vision sensor, infrared sensing
  • 相关文献

参考文献11

  • 1Hsiao Y F, Tarng Y S, Huang W J. Optimization of plasma arc welding parameters by using the Taguchi method with the grey relational analysis. Materials and Manufacturing Proces- ses, 2007, 23(1): 51-58.
  • 2Martikainen J. Conditions for achieving high-quality welds in the plasma-arc keyhole welding of structural steels. Journal of Materials Processing Technology, 1995, 52 ( 1 ) : 68 - 75.
  • 3Wu C S, Wang L, Ren W J, et al. Plasma arc welding: process, sensing, control and modeling. Journal of Manutac- turing Processes, 2014, 16( 1 ) : 74 -85.
  • 4Martikainen J K, Moisio T J I. Investigation of the effect of welding parameters on weld quality of plasma arc keyhole welding of structural steels. Welding Journal, 1993,72 (7) : 329s - 340s.
  • 5Wu C S. Welding thermal processes and weld pool behaviors. Beijing: China Machine Press, 2011. Tomsic M J, Jackson C E. Energy distribution in keyhole mode plasma arc welds. Welding Journal, 1974, 53 ( 3 ) : 109s - 115s.
  • 6Tomsic M J, Jackson C E. Energy distribution in keyhole mode plasma arc welds. Welding Journal, 1974, 53 ( 3 ) : 109s - 115s.
  • 7Bashenko V V, Sosnin N A. Optimization of the plasma arc welding process. Welding Journal, 1988, 67 (10) : 233s - 237s.
  • 8Halmoy E, Fostervoll H, Ramsland A R. New applications of plasma keyhole welding. Welding in the World, 1994, 34: 285 - 291.
  • 9Zhang Y M, Zhang S B. Observation of the keyhole during plasma arc welding. Welding Journal, 1999, 78 (2) : 53s - 58s.
  • 10Liu Z, Wu C S, Gao J. Vision-based observation of keyhole geometry in plasma arc welding. International Journal of Thermal Sciences, 2013, 63( 1 ) : 38 -45.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部