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Signal emitted from plasma during electron-beam welding with deflection oscillations of the beam

机译:电子束焊接过程中从等离子体发出的信号,带有束的偏转振荡

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The oscillations of a signal, collected by a ring electrode with +50V potential, situated in the plasma over the welding zone during electron beam welding (EBW) with local beam deflection oscillations were studied. Samples of chrome-molybdenum steel were processed. The frequencies of the beam oscillations varied between 150 and 1400 Hz and their trajectories were the simplest: along and across the joint. The position of the beam focus was changed. Fluctuations of the emitted plasma current by coherent accumulation of the signal amplitudes were analysed and the probability for instability excitations in the keyhole was estimated. This method allows the study of the random instability processes at the interaction of the beam with the keyhole wall and bottom. A time shift between the maxima of the function derived from the coherent accumulation and the extremes of the deflection coil current was found. This shift depends on the beam focus position. In addition, at longitudinal beam oscillations, and at variations of the focus position a difference of the extreme values of the studied signal was observed. At the lowest values of the current of the focusing electromagnetic lens, the differences between the maxima of the probabilities for excitation of the plasma signal oscillations in the moments at beam bombardment on the front and trailing walls of the keyhole in the molten pool were about 30%, while the beam overfocusing decreased these differences. For beams situated at the central part of the keyhole, the collected signal was minimal. From the observations of spikes in the weld root, at EBW with deflection oscillations, it was concluded that self-focusing of the beam in the bottom part of the keyhole in the cases of the most focusing positions was occurring.
机译:研究了在具有局部电子束偏转振荡的电子束焊接(EBW)期间,在焊接区上方等离子体中由+ 50V电位的环形电极收集的信号的振荡。处理了铬钼钢的样品。光束振荡的频率在150至1400 Hz之间变化,并且它们的轨迹最简单:沿着和穿过关节。光束焦点的位置已更改。分析了由于信号幅度的相干积累而导致的发射等离子体电流的波动,并估计了锁孔中激发不稳定的可能性。这种方法可以研究梁与锁孔壁和底部相互作用时的随机失稳过程。发现了从相干累积得出的函数最大值与偏转线圈电流的极值之间的时间偏移。该偏移取决于光束聚焦位置。另外,在纵向光束振荡和焦点位置变化的情况下,观察到所研究信号的极值差异。在聚焦电磁透镜的电流的最小值处,在熔池中钥匙孔的前壁和后壁上的光束轰击瞬间,激发等离子体信号振荡的概率的最大值之间的差约为30 %,而光束过度聚焦则减小了这些差异。对于位于钥匙孔中央的光束,所收集的信号很小。从观察到的焊缝根部的尖峰,在具有偏转振荡的EBW处,可以得出结论,在最集中位置的情况下,光束在键孔底部发生了自动聚焦。

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