...
首页> 外文期刊>Welding International >Shape control of TIG arc plasma by cusp-type magnetic field with permanent magnet
【24h】

Shape control of TIG arc plasma by cusp-type magnetic field with permanent magnet

机译:永磁尖峰型磁场控制TIG电弧等离子体的形状

获取原文
获取原文并翻译 | 示例
           

摘要

The shape of arc plasma in gas-shielded arc welding is an important factor for the quality and efficiency of the welding. The arc plasma changes its shape by an external magnetic field because the arc is a flow of electricity and is subjected to the electromagnetic force. In this study, we examined the control of arc plasma by a cusp-type magnetic field. The field produces a high and low magnetic area alternatively, and changes the cross-section of the arc plasma from a circular to an elliptical shape. The previous study using solenoid coils to produce a cusp-type magnetic field reported that magnetized arc plasma provided deeper penetration. However, the solenoid device developed for the cusp magnetic field was too large in comparison with the size of the welding torch used for production welding. Therefore, this study investigated the magnetic control of arc plasma with permanent magnets that have recently become smaller in size and higher in intensity. Theoretical analysis model was constructed to determine the optimum arrangement of the magnets. This analysis requires a three-dimensional numerical model because the temperature-, velocity-, and electromagnetic fields of arc plasma change three-dimensionally by the additional magnetic field. It was analytically and experimentally shown in TIG arc welding that the arc shape could be elliptical cross-section even using the permanent magnets. Furthermore, our analysis showed that the effective magnetization direction of magnets was vertical, and this result was confirmed experimentally. As a result, we obtained the good bead appearance in the high-speed welding with this magnetic control.
机译:气体保护电弧焊中电弧等离子体的形状是影响焊接质量和效率的重要因素。电弧等离子体通过外部磁场改变其形状,因为电弧是电流,并受到电磁力的作用。在这项研究中,我们检查了尖峰型磁场对电弧等离子体的控制。该场交替地产生高和低磁区,并将电弧等离子体的横截面从圆形改变为椭圆形。以前使用螺线管线圈产生尖峰型磁场的研究报告说,磁化电弧等离子体提供了更深的穿透力。然而,与用于生产焊接的焊炬的尺寸相比,为尖端磁场开发的螺线管装置太大。因此,本研究研究了永磁体对电弧等离子体的磁控制,永磁体最近变得越来越小,强度越来越高。建立了理论分析模型来确定磁体的最佳布置。这种分析需要一个三维数值模型,因为电弧等离子体的温度,速度和电磁场会由于附加磁场而在三维范围内变化。在TIG电弧焊中分析和实验表明,即使使用永磁体,电弧形状也可以是椭圆形横截面。此外,我们的分析表明,磁体的有效磁化方向是垂直的,并且该结果在实验上得到了证实。结果,通过这种磁控制,我们在高速焊接中获得了良好的焊道外观。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号