首页> 外文会议>Conference on Laser Materials Processing Vol.85f: Welding and Modeling, Nov 16-19, 1998, Orlando, FL USA >Numerical Prediction and Measurement of the Weld Depth Dependence on the Beam Focal Position During Laser Welding
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Numerical Prediction and Measurement of the Weld Depth Dependence on the Beam Focal Position During Laser Welding

机译:激光焊接过程中焊接深度随光束焦点位置的数值预测和测量

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The effect of laser beam focus position on penetration depth in CW laser welding was studied numerically and experimentally. Calculations were performed using a transient hydrodynamic model, which assumes front keyhole wall propagation due to the melt expulsion induced by evaporation recoil pressure. The calculation results are compared with experimental welding data obtained using a 1650W CO_2 laser. The simulations predict that beam absorption in the plasma has a significant effect on the relationship between penetration and focus position. When the process parameters result in strong beam absorption in the near surface plasma, the maximum penetration will occur when the laser focus is at or above the sample surface. In a case of weak absorption however, the penetration depth reaches its maximum value when the beam focus is located below the sample surface.
机译:数值和实验研究了激光束焦点位置对连续波激光焊接熔深的影响。使用瞬态流体动力学模型进行计算,该模型假设由于蒸发后坐力引起的熔体排出而导致前锁孔壁扩展。将计算结果与使用1650W CO_2激光器获得的实验焊接数据进行比较。该模拟预测,等离子体中的束吸收对穿透和聚焦位置之间的关系具有重大影响。当工艺参数导致近表面等离子体中的强光束吸收时,当激光焦点位于样品表面或样品表面上方时,将发生最大穿透。但是,在吸收较弱的情况下,当光束焦点位于样品表面下方时,穿透深度会达到最大值。

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