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Connection Mechanism of Molten Pool during Laser Transmission Welding of T-Joint with Minor Gap Presence

机译:微小间隙T型接头激光透射焊接过程中熔池的连接机理

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摘要

Laser welding of T-joint transmitting from the face plate to the core is commonly used in the sandwich structure preparation. Minor gaps between the face and the core plate are inevitably present after several beads on the sandwich structure welding due to the thermal deformation. The effects of gap presence on fluid flow from the face to the core plate are rather significant, where the gas can be easily entrapped into the pool and form the pores. To this end, three-dimensional transient simulations based on VOF (volume of fluid) method were conducted to explore and ascertain the effect of fluid flow inside the pool on the pore formation due to the gap presence. It was found that minor gap within 0.2 mm will not reduce the welding quality. Under the effects of gravity and surface tension, the fluid from the face sheet will drop down to the core, which removes all the air out of the gap and the laser goes through the fluid of the gap and then shines on the core, which prevents the air from being entrapped into the pool. While the laser goes though gap, the wall of keyhole opens and closes continuously. The vibrating time of keyhole is approximately 0.029 s. After finishing the vibration, the welding is stable, which is the same as common unfull penetration. Finally, the simulated results are well verified through observing the plasma oscillating frequency in the gap and comparing to the pore-free bead profile. This paper supplies evidence that minor gap presence during laser transmitting welding on sandwich structure has nothing to do with pore formation.
机译:从面板到型芯的T型接头的激光焊接通常用于三明治结构的制备中。由于热变形,在夹层结构上的多个焊缝焊接后,不可避免会在面板和芯板之间形成微小的间隙。缝隙的存在对从表面到芯板的流体流动的影响非常显着,在这种情况下,气体很容易被捕集到池中并形成孔隙。为此,进行了基于VOF(流体体积)方法的三维瞬态模拟,以探索并确定由于间隙的存在,池内流体流动对孔隙形成的影响。发现0.2mm内的微小间隙不会降低焊接质量。在重力和表面张力的作用下,来自面板的流体将下降到纤芯,从而将所有空气从缝隙中清除,激光穿过缝隙中的流体,然后照射到纤芯上,从而防止了空气被卷入泳池。当激光穿过间隙时,锁孔壁会连续打开和关闭。锁孔的振动时间约为0.029 s。振动消除后,焊接稳定,这与常见的不完全熔深相同。最后,通过观察间隙中的等离子体振荡频率并将其与无孔磁珠轮廓进行比较,可以很好地验证模拟结果。本文提供的证据表明,在夹层结构上进行激光透射焊接时,微小的间隙存在与孔的形成无关。

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