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Numerical simulation of full penetration laser welding of thick steel plate with high power high brightness laser

机译:大功率高亮度激光对厚钢板的全熔透激光焊接的数值模拟

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Full penetration laser welding was carried out on a 10 mm steel plate using a 16kW maximum power continuous wave thin disk laser. Upper surface and lower surface of molten pool were observed synchronously with two high speed CCD cameras during the welding process. The lower surface was much longer and more unstable than the upper one. A three dimensional laser deep penetration welding model in which volume of fluid (VOF) method was combined with a ray-tracing algorithm was used to simulate the dynamic coupling between keyhole and molten pool in laser full penetration welding. The calculated weld cross-section morphology and molten pool length on both upper side and lower side agree well with experimental results. Evolution of molten pool in lower side during full penetration laser welding was analyzed, periodical features of energy coupling, molten pool behavior and keyhole dynamics in laser full penetration welding were identified and discussed.
机译:使用16kW最大功率连续波薄盘激光器在10 mm钢板上进行全熔透激光焊接。在焊接过程中,用两个高速CCD摄像机同步观察熔池的上表面和下表面。下表面比上表面更长,更不稳定。将流体体积(VOF)方法与射线追踪算法相结合的三维激光深熔焊模型,用于模拟激光全熔焊中小孔与熔池之间的动态耦合。计算的焊缝截面形态和上下熔池长度与实验结果吻合良好。分析了全熔透激光焊接过程中下部熔池的演变,确定并讨论了激光全熔透焊接的能量耦合,熔池行为和锁孔动力学的周期性特征。

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