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A heat transfer model for deep penetration laser welding based on an actual keyhole

机译:基于实际锁孔的深熔激光焊接传热模型

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Using a specially designed experimental setup, we obtained a clear stable keyhole with a high-speed camera. A heat transfer model with a cylindrical surface heat source has been developed under the assumption of the keyhole per thin layer being cylindrical. The model is numerically solved by finite element method, the temperature field around the keyhole and the heat flux lost to the keyhole wall can be obtained. The effects of such factors as the shape and the size of the keyhole, the welding speed on the shape of the melt pool are studied. By comparing the laser intensity absorbed on the keyhole walls with the heat flux lost there, the mechanism of energy balance on the keyhole walls is investigated.
机译:使用专门设计的实验装置,我们使用高速相机获得了清晰稳定的锁眼。在假设每个薄层的锁孔为圆柱形的情况下,开发了具有圆柱形表面热源的传热模型。通过有限元方法对该模型进行数值求解,可以获得锁孔周围的温度场和散失到锁孔壁上的热通量。研究了锁孔的形状和大小,焊接速度对熔池形状的影响。通过比较钥匙孔壁上吸收的激光强度和那里损失的热通量,研究了钥匙孔壁上的能量平衡机理。

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