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Penetration control in laser welding of sheet metal

机译:钣金激光焊接中的渗透控制

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For economical reasons it is desirable to apply the highest possible speed during laser welding. Increasing the welding speed at a certain laser power might result in insufficient penetration of the weld. This work describes the design of a feedback controller, which is able to maintain full penetration in mild steel sheets. An optical detector, which is placed inside the Nd:Yttrium-aluminium-garnet laser source, measures the intensity of the weld-pool radiation through the optical fiber. This sensor signal is used as input of a feedback control system. A model, which describes the dynamic response of the welding process including the sensor and laser source dynamics, has been obtained, using system identification techniques. The input of this model is the laser power and the output is the modeled sensor signal. Based on this dynamic model a feedback controller is designed and implemented. The laser power is used as an actuator. The controller maintains full penetration during welding of tracks with disturbances like sudden artificial power fluctuations and sudden speed changes. This feedback controller opens the possibility to optimize the welding speed without risking lack of penetration.
机译:出于经济原因,希望在激光焊接过程中采用尽可能高的速度。在一定的激光功率下提高焊接速度可能会导致焊缝熔深不足。这项工作描述了一种反馈控制器的设计,该控制器能够保持低碳钢板的完全渗透。放置在Nd:钇铝石榴石激光源内部的光学探测器可测量通过光纤的熔池辐射的强度。该传感器信号用作反馈控制系统的输入。使用系统识别技术,已获得一个描述焊接过程动态响应的模型,其中包括传感器和激光源动力学。该模型的输入是激光功率,输出是建模的传感器信号。基于该动态模型,设计并实现了反馈控制器。激光功率用作致动器。在焊接过程中,控制器会保持全程熔透,不会产生干扰,例如突然的人工功率波动和突然的速度变化。该反馈控制器为优化焊接速度提供了可能,而又不会缺乏熔深的风险。

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