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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Quality monitoring of end plug resistance weldment for nuclear fuel rods by electrode displacement
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Quality monitoring of end plug resistance weldment for nuclear fuel rods by electrode displacement

机译:电极位移核燃料杆末端塞电阻焊焊件的质量监测

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摘要

The welds on the fuel rods in a nuclear power fuel assembly are the most likely places to leak during combustion, and therefore, the integrity of the welds is critical. The end plug welding method used for the nuclear fuel rod was upset butt resistance welding, and the welding time was a very short 1?cycle. The purpose of this research was to investigate factors that could be used to monitor the welding quality of end plug welds on nuclear fuel rods. In this study, to assess the integrity of the nuclear fuel rod welds, the waveform of the variables during the short welding time was measured using a waveform measurement device, and the quality assessment factors that can impact the welding quality were determined. To deduce the quality assessment factors, this study chose to use instantaneous displacement, which was calculated from electrode displacement. To observe electrode movements resulting from instantaneous thermal expansion on welds, a displacement sensor was installed on the welding machine, and physical phenomena were analyzed per half-cycle by measuring displacement signals during welding. In addition, damage to major components of the welding equipment was simulated. Welding testing was carried out to determine the waveforms, and the quality assessment factor values here were compared with the values corresponding to a normal welding condition. Through this study, the major components of welding equipment were monitored to ensure the integrity of the welding.
机译:在核电燃料组件中的燃料棒上的焊缝是燃烧过程中最可能的泄漏位置,因此,焊缝的完整性是至关重要的。用于核燃料杆的端部插头焊接方法是对接电阻焊接的镦粗镦粗焊接,焊接时间是非常短的1?循环。本研究的目的是调查可用于监测核燃料棒上端插头焊缝焊接质量的因素。在本研究中,为了评估核燃料棒焊缝的完整性,使用波形测量装置测量在短焊接时间内的变量的波形,并确定可能影响焊接质量的质量评估因子。为了推断出质量评估因素,该研究选择使用瞬时位移,从电极位移计算。为了观察由焊缝上的瞬时热膨胀产生的电极运动,在焊接机上安装了位移传感器,通过测量焊接期间的位移信号来分析物理现象。此外,模拟了焊接设备的主要部件的损坏。进行焊接测试以确定波形,并将此处的质量评估因子值与对应于正常焊接条件的值进行比较。通过本研究,监测焊接设备的主要部件以确保焊接的完整性。

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