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Investigation of the Effect of Welding Heat Input and Focal Distance of Laser Beam on Penetration Depth and Dynamics of Welding Pool Using a High-Speed Video Camera

机译:使用高速摄像机对激光束焊接热输入和激光射频射频距离焊接深度与焊接池动力学的影响研究

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摘要

The paper presents the investigation results of a metal plate re-melting process by a fiber laser beam using a high-speed video camera. The obtained video materials allow observing the transition process of molten metal to a solid state. The dependence of the molten metal transition to the solid state on the laser welding speed and on the focal distance (in the range of ± 20 mm) is analyzed. A quantitative analysis of the geometric dimensions of the microstructural components of the re-melted metal was carried out. When comparing the processed video material and microstructure elements of the molten pool, the similar trends are observed depending on the re-melting speed by a laser beam in a certain range of speeds from 20 to 45 mm/s. The obtained results can be used to develop a technique for estimating the presence of a key-hole depending on the laser focal distance.
机译:本文通过使用高速摄像机通过光纤激光束提出了金属板重新熔化过程的调查结果。所获得的视频材料允许观察熔融金属的过渡过程到固态。分析熔融金属过渡对激光焊接速度和焦距的固态的依赖性(在±20mm的范围内)。进行了重新熔化金属的微观结构组分的几何尺寸的定量分析。当比较熔池的加工视频材料和微观结构元件时,根据20至45mm / s的一定速度的激光束,观察到类似的趋势。所得结果可用于开发一种用于根据激光焦距估计钥匙孔的存在的技术。

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