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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Scaling of spiking and humping in keyhole welding
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Scaling of spiking and humping in keyhole welding

机译:锁孔焊接中的尖峰和隆起的缩放

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摘要

Spiking, rippling and humping seriously reduce the strength of welds. The effects of beam focusing, volatile alloying element concentration and welding velocity on spiking, coarse rippling and humping in keyhole mode electron-beam welding are examined through scale analysis. Although these defects have been studied in the past, the mechanisms for their formation are not fully understood. This work relates the average amplitudes of spikes to fusion zone depth for the welding of Al 6061, SS 304 and carbon steel, and Al 5083. The scale analysis introduces welding and melting efficiencies and an appropriate power distribution to account for the focusing effects, and the energy which is reflected and escapes through the keyhole opening to the surroundings. The frequency of humping and spiking can also be predicted from the scale analysis. The analysis also reveals the interrelation between coarse rippling and humping. The data and the mechanistic findings reported in this study are useful for understanding and preventing spiking and humping during keyhole mode electron and laser beam welding.
机译:尖刺,波纹和隆起严重降低了焊接强度。通过比例分析,研究了束聚焦,挥发性合金元素浓度和焊接速度对锁孔模式电子束焊接中的尖峰,粗大波纹和起伏的影响。尽管过去已经研究了这些缺陷,但对其形成机理尚未完全了解。这项工作将尖峰的平均振幅与Al 6061,SS 304和碳钢以及Al 5083的焊接的熔合区深度相关联。规模分析引入了焊接和熔化效率以及适当的功率分布以解决聚焦效应,并且被反射并通过钥匙孔开口逸出到周围的能量。驼峰和尖峰的频率也可以通过比例分析来预测。分析还揭示了粗糙波纹和驼峰之间的相互关系。这项研究中报告的数据和机理发现对于理解和防止在锁孔模式电子和激光束焊接过程中出现尖峰和隆起非常有用。

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