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Distinct morphology of keyhole wall during high power fibre laser deep penetration welding

机译:高功率光纤激光深熔焊过程中匙孔壁的独特形态

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摘要

The keyhole wall is the interaction interface between the laser and the material during the laser deep penetration welding. Measuring the morphology of the keyhole wall is thus of significance for understanding the high power fibre laser deep penetration welding process. In this paper, the clear keyhole wall was reserved by suddenly closing laser during high power fibre laser welding of copper alloy. The results indicate that the keyhole can be divided into laser action region and metallic vapour pressure maintenance region. The laser action region is on the front wall of keyhole, and a series of concentric elliptical rings are observed in this region. In another region, its diameter is significantly larger than the spot diameter and the keyhole wall is basically smooth. The results are different from those generally accepted viewpoints, which clarify the flowing law of molten fluid in the keyhole and are thus of great guiding significance for optimising the welding technology.
机译:锁孔壁是激光深熔焊过程中激光与材料之间的相互作用界面。因此,测量锁孔壁的形态对于理解高功率光纤激光深熔焊工艺具有重要意义。在本文中,通过在铜合金的高功率光纤激光焊接过程中突然关闭激光来保留透明的锁孔壁。结果表明,钥匙孔可分为激光作用区域和金属蒸气压维持区域。激光作用区域在锁孔的前壁上,在该区域观察到一系列同心椭圆形环。在另一个区域,其直径明显大于光斑直径,并且锁孔壁基本上是光滑的。结果与那些普遍接受的观点不同,后者阐明了锁孔中熔融流体的流动规律,因此对于优化焊接工艺具有重要的指导意义。

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