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韦寿祺, 李雪娇, 莫金海. 一种电子束扫描焊控制技术[J]. 焊接学报, 2014, 35(11): 89-92,96.
引用本文: 韦寿祺, 李雪娇, 莫金海. 一种电子束扫描焊控制技术[J]. 焊接学报, 2014, 35(11): 89-92,96.
WEI Shouqi, LI Xuejiao, MO Jinhai. A control technique for electron-beam scan welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2014, 35(11): 89-92,96.
Citation: WEI Shouqi, LI Xuejiao, MO Jinhai. A control technique for electron-beam scan welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2014, 35(11): 89-92,96.

一种电子束扫描焊控制技术

A control technique for electron-beam scan welding

  • 摘要: 阐述了由有限线段和圆弧组合逼近二维焊缝轨迹扫描焊的三步骤:示教寻迹、轨迹计算和扫描焊.采取斜角与直角坐标数据互换,解决制造工艺引起的x,y扫描轴不垂直问题;采用以电子束偏转幅值及速度为因变量动态校正偏扫励磁电流方法,解决扫描轨迹失真问题;采用以电子束偏移矢量为因变量动态校正聚焦励磁电流方法,解决偏转后束斑散焦问题."跑道"形焊缝扫描焊试验结果为:焊缝偏离中心小于0.08 mm、焊缝深度误差小于0.13 mm、焊缝表面宽度误差小于0.16 mm,结果表明,电子束扫描焊三步骤能够比较精确地复现焊缝轨迹及较好的焊接效果.

     

    Abstract: In electron-beam(EB) scan welding, the 2D seam tracking could be approximated by combination of limited line segments and basic arc graphics, hence the whole welding processes could be divided into 3 steps: tracing of teaching, calculating of tracking data, and scan welding. In these processes, three main problems, non-vertical of x-y scanning axis, distortion of scanning track and defocusing of EB spot could be solved by proper conversion of oblique and rectangular coordinates, dynamic correction of deflection scanning magnetizing current with EB's deflection amplitude and velocity, and dynamic correction of focusing magnetizing current with EB's deflection vector, respectively. The welding results with "track field" type seam tracking reveal that, eccentric distance is above 0.08 mm, depth error is lower than 0.13 mm, width error in surface is lower than0.16 mm. The proposed welding method could precisely repeat the seam tracking and obtain excellent welding quality.

     

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