窦希宇, 高文静, 马康, 等. 导管全位置脉冲TIG焊电弧磁偏吹现象[J]. 焊接, 2024(4):70 − 73. DOI: 10.12073/j.hj.20221204001
引用本文: 窦希宇, 高文静, 马康, 等. 导管全位置脉冲TIG焊电弧磁偏吹现象[J]. 焊接, 2024(4):70 − 73. DOI: 10.12073/j.hj.20221204001
Dou Xiyu, Gao Wenjing, Ma Kang, et al. Research on arc magnetic deflecting phenomenon of pipeline all-position pulse TIG welding[J]. Welding & Joining, 2024(4):70 − 73. DOI: 10.12073/j.hj.20221204001
Citation: Dou Xiyu, Gao Wenjing, Ma Kang, et al. Research on arc magnetic deflecting phenomenon of pipeline all-position pulse TIG welding[J]. Welding & Joining, 2024(4):70 − 73. DOI: 10.12073/j.hj.20221204001

导管全位置脉冲TIG焊电弧磁偏吹现象

Research on arc magnetic deflecting phenomenon of pipeline all-position pulse TIG welding

  • 摘要: 在航天运载器管路焊接过程中,常会遇到电弧磁偏吹现象。受零件材料、环境及设备等因素的影响,电弧磁偏吹产生原因往往难以确定,而磁偏吹会使焊接位置偏移带来咬边、未焊透、未熔合等缺陷,严重时将无法施焊,为管路焊缝成形带来困扰。为此分析了运载器磁性零件焊接过程中电弧磁偏吹的产生机理,并为后续库存磁性零件的焊接总结出了抵抗电弧磁偏吹的方法。

     

    Abstract: Arc magnetic deviation blowing deflection is often encountered during pipeline welding of space vehicle. Due to the influence of parts material, environment and equipment, it is difficult to determine the cause of arc magnetic deviation blowing, and magnetic deviation blowing will lead to the welding position deviation, resulting in defects such as edge bite, incomplete welding, incomplete fusion, etc. In serious cases, welding will not be able to be applied, which brings trouble to the pipeline weld forming. Therefore, the mechanism of arc magnetic deviation blowing in the welding process of magnetic parts of carrier is analyzed, and the methods to resist arc magnetic deviation blowing are summarized for the welding of magnetic parts in stock.

     

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