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Indium Welding Process Improvement

机译:铟焊接工艺改进

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摘要

An investigation is underway to evaluate an improvement to an iridium welding process. A pulsed gas tungsten arc welding (GTAW) process is being evaluated to replace the existing GTAW process which uses a magnetic arc oscillator. The magnetic arc oscillator has been credited with refinement of the weld grain structure and improved fracture toughness, which is critical to this iridium alloy as it is susceptible to rapid grain growth during welding, however, the actual magnetic deflection of the arc cannot be measured, thus this aspect of the process cannot be calibrated and the appropriate operating conditions cannot be confirmed and maintained. A pulsed current GTAW process, developed for a tantalum alloy with grain growth issues similar to iridium, has shown improved grain refinement and ductility compared to a conventional constant current GTAW process, so this pulsed current approach is being investigated for the iridium welding process. The discussion includes background of iridium welding issues, the development approach and results from the tantalum pulsed weld, and the results to date on the iridium weld investigation.
机译:正在进行一项研究,以评估对铱焊接工艺的改进。正在评估脉冲气钨极电弧焊(GTAW)工艺,以取代使用磁弧振荡器的现有GTAW工艺。电磁弧振荡器因其焊接晶粒结构的细化和断裂韧性的提高而著称,这对于这种铱合金至关重要,因为它易于在焊接过程中快速生长,但是无法测量电弧的实际磁偏角,因此,无法对此过程的这一方面进行校准,并且无法确认和维持适当的操作条件。针对具有与铱相似的晶粒生长问题的钽合金开发的脉冲电流GTAW工艺,与传统的恒定电流GTAW工艺相比,已显示出改善的晶粒细化和延展性,因此正在研究这种脉冲电流方法用于铱焊接工艺。讨论内容包括铱焊接问题的背景,钽脉冲焊的开发方法和结果,以及迄今为止铱焊接研究的结果。

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