首页> 外文期刊>IEEE Transactions on Plasma Science >Spectral Analysis of the Dynamic Behavior of a Welding Arc During Pulsed Gas Metal Arc Welding of AA5083 Aluminum Alloy With ER5183 Wire
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Spectral Analysis of the Dynamic Behavior of a Welding Arc During Pulsed Gas Metal Arc Welding of AA5083 Aluminum Alloy With ER5183 Wire

机译:ER5183线AA5083铝合金脉冲气弧焊时电弧动力学行为的频谱分析。

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摘要

The dynamic behavior of an arc plasma involves the complex heat and mass transfer process in the arc welding process, especially for pulsed gas metal arc welding (P-GMAW). The spectral diagnostics of the arc plasma is essential to both the validation of simulation results and the monitoring and control of the arc welding process. In this article, we studied the dynamic behavior and spatial spectral characteristics of the welding arc during the pulsed gas metal arc welding of the AA5083 aluminum alloy with an ER5183 wire using a high-speed camera and spectrometer. Based on the acquired spectra at different time points of the pulse, we calculated the plasma characteristics using the spectral lines emitted from the shielding gas and the metal vapor. The variation and spectral diagnosis of the arc indicated that the bright region was mainly caused by radiation from the metal vapor, which easily increased at the peak current. The measured arc temperature and electron density were elevated along with the welding current. Moreover, the ratio of metal vapor in the arc plasma also increased due to strengthened evaporation from the electrode. Along the horizontal axis, the arc temperature increased and reached a maximum in the central part of the arc. There was a potential local minimum near the electrode as the current increased. The drop of temperature near the electrode was mainly caused by the rapid evaporation and cooling effects of metal vapor.
机译:电弧等离子体的动态行为涉及电弧焊过程中复杂的传热和传质过程,尤其是对于脉冲气体金属电弧焊(P-GMAW)。电弧等离子体的光谱诊断对于仿真结果的验证以及电弧焊接过程的监视和控制都是必不可少的。在本文中,我们使用高速相机和光谱仪研究了用ER5183焊丝对A5081铝合金进行A5083铝合金的脉冲气体保护金属电弧焊过程中焊弧的动态行为和空间光谱特性。基于在脉冲的不同时间点获得的光谱,我们使用保护气体和金属蒸气发出的光谱线计算了等离子体特性。电弧的变化和光谱诊断表明,亮区主要是由金属蒸气发出的辐射引起的,在峰值电流时很容易增加。测得的电弧温度和电子密度与焊接电流一起升高。此外,由于从电极的蒸发增强,电弧等离子体中金属蒸气的比例也增加了。沿着水平轴,电弧温度升高并在电弧的中心部分达到最高。随着电流的增加,电极附近有一个潜在的局部最小值。电极附近的温度下降主要是由于金属蒸气的快速蒸发和冷却作用所致。

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