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Liquid Motion in Keyhole Laser Welding

机译:锁孔激光焊接中的液体运动

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摘要

Liquid motion in fusion welding plays the important role in the heat and mass transfer as well as stability of bead formation. In an arc weld pool, many works have been intensively conducted experimentally and theoretically. In a keyhole laser welding, however, there is few comprehensive study on the metal flow and its related phenomena in weld pool. In the present work, liquid motion in the laser weld pool was directly observed by the high-speed optical and X-ray transmission methods using tracing particles put in the pool. Slag motion on the pool surface revealed that there was a quick stream flowing around the side of keyhole and it changed the direction to forward at the rear part of weld pool. Namely, there was a big circulation of flow in the rear part of pool surface. Liquid flow inside the pool was observed by tracing the X-ray transmission images of Tungsten particles that were initially sandwiched between two thin sheets. The flow pattern inside the pool was very complex and there observed a strong eddy just behind the keyhole. The flow speed inside the pool was 0.3 to 0.5 m/s and this fast stream hindered the bubbles of metallic vapor and shielding gas to float up by buoyancy force and resulted in the formation of characteristic porosity.
机译:熔焊中的液体运动在传热和传质以及焊道形成的稳定性中起着重要作用。在电弧焊池中,已经在实验和理论上进行了大量工作。然而,在锁孔激光焊接中,对焊缝池中金属流动及其相关现象的研究很少。在当前的工作中,通过使用放置在熔池中的示踪颗粒,通过高速光学和X射线透射方法直接观察到激光焊接熔池中的液体运动。熔池表面的熔渣运动表明,在锁孔的侧面有一条快速的水流,它改变了焊池后部向前的方向。即,池面后部的水流较大。通过追踪最初夹在两个薄片之间的钨粒子的X射线透射图像,可以观察到池内的液体流动。水池内的水流非常复杂,在锁孔的后面观察到强烈的涡流。池内的流速为0.3至0.5 m / s,该快速流阻止金属蒸气和保护气体的气泡在浮力的作用下漂浮,并导致形成特征孔隙。

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