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COMPARISON OF SPATTER CHARACTERISTICS IN FIBER AND CO_2 LASER BEAM WELDING OF ALUMINUM ALLOY

机译:铝合金光纤和CO_2激光束焊中飞溅特性的比较

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Spatters in laser penetration welding of aluminum alloys can pollute the focusing system, which would affect the processing stability and welding quality. Furthermore, the spatter characteristics can reflect the laser welding process in some degree. In this paper, the spatter characteristics in fiber and CO_2 laser welding of 6061-T6 aluminum alloy are investigated, and the reasons for the difference of the spatter characteristics are discussed. Dynamic behavior of spatters is recorded in real-time using a high-speed camera. The spatter particles are captured and measured experimentally. Probability density functions (PDFs) about the spatter velocity and particle size are fitted by Ordinary Least Squares (OLS) method in χ~2 test. The result indicates that the spatter speed obeys Gaussian distribution and the particle size follows Lognormal distribution in both cases. The statistical speed of spatters is slower and the statistical diameter is greater in CO_2 laser welding. Moreover, under 95% confidence, the particle size's PDF is more subject to Lognormal distribution with a much smaller residual mean square (RMS) of 3.26×10~(-3) in fiber laser welding than that of 0.109 in CO_2 laser welding.
机译:在激光穿透焊接飞溅铝合金会污染聚焦系统,这会影响加工稳定性和焊接质量。此外,飞溅特性可反映在一定程度上激光焊接工艺。在本文中,在光纤和激光CO_2焊接6061-T6铝合金的飞溅特性调查,并且讨论了的飞溅特性的差异的原因。飞溅的动态行为是使用高速摄像机记录在实时。飞溅颗粒被捕获和实验测量。在χ〜2检验的概率密度函数(pdf)关于飞溅速度和粒径是通过普通最小二乘拟合(OLS)方法。结果表明,该飞溅速度服从高斯分布和颗粒尺寸遵循在这两种情况下对数正态分布。飞溅的统计速度较慢,统计直径大于在CO_2激光焊接。此外,在95%的置信度,粒度的PDF是更受以小得多的残余均方(RMS)3.26×10〜(-3)在光纤激光焊接比在CO_2激光焊接0.109的对数正态分布。

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