复杂变截面结构电子束焊接精密熔透控制

Precision penetration control in electron beam welding of complex variable cross-section structures

  • 摘要:
    目的 旨在解决航空电子设备液冷结构中异种铝合金复杂焊缝的成形与熔透控制难题。
    方法 该文系统研究了电子束焊接工艺参数对6061/5A06异种铝合金接头质量的影响规律。通过优化焊接工艺参数、扫描−束流动态协同调控技术等措施,实现了长焊缝、小曲率半径及变截面结构的精密熔透焊接。
    结果 结果表明,扫描工艺可有效消除铝合金焊接中的钉尖缺陷,优化熔池流动与能量分布,采用200~500 Hz的扫描频率与0.5~1.0 mm的幅值组合能将熔深波动控制在0.2 mm以内。
    结论 通过束流、聚焦电流的动态协同调控,可实现复杂路径与变截面结构焊接,熔深波动控制在0.5 mm及0.2 mm以内。焊缝外观、内部质量、熔深均满足产品的使用要求。

     

    Abstract: Objective The aim was to solve the problems of forming and penetration control of dissimilar aluminum alloy complex welds in liquid cooling structures of aviation electronic equipment. Methods This paper systematically investigated influence of electron beam welding parameters on joint quality of 6061/5A06 dissimilar aluminum alloys. Through optimization of welding parameters and dynamic collaborative control technology of scanning and beam current, precision penetration welding of long welds, small curvature radius structures, and variable cross-section structures was achieved. Results The results indicated that scanning process effectively eliminated spike defects in aluminum alloy welding and optimized molten pool flow and energy distribution. By employing a scanning frequency of 200~500 Hz combined with an amplitude of 0.5~1.0 mm, penetration fluctuation was controlled within 0.2 mm. Conclusion Through dynamic collaborative regulation of beam current and focusing current, welding of complex paths and variable cross-section structures was accomplished, with penetration fluctuations controlled within 0.5 mm and 0.2 mm, respectively. The weld appearance, internal quality, and penetration depth all satisfied product requirements.

     

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