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New approaches for highly productive laser welding of copper materials

机译:铜材料高效率激光焊接的新方法

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Laser welding of highly conductive materials like copper is a difficult proposition, but offers a useful non-contact joining method, well geared for automation. Copper''s high reflectivity at the 1 µm wavelengths has always been the barrier in the past to implement laser welding. Frequency doubled green lasers can remove this barrier and has a high potential to revolutionize the laser welding of copper materials in high volumes and for future applications. In this paper, we present new results for welding copper and copper alloys with a novel brilliant laser, emitting in the green wavelength region (up to 325 W@515 nm, 2 mm mrad). The results are compared with a state-of-the-art solid state laser, emitting in the infrared wavelength region (up to 1000 W@1030 nm, 2 mm mrad). Fundamental investigations on the absorption and energy coupling properties in the different phases of the process (heating up, heat conduction welding, deep penetration welding) were performed to learn more about process stability and process reproducibility of the welding process at copper alloys. Significant increase in process reproducibility can be demonstrated by using a green laser.
机译:高导电性材料(如铜)的激光焊接是一个难题,但它提供了一种有用的非接触式连接方法,非常适合于自动化。过去,铜在1 µm波长处的高反射率一直是实现激光焊接的障碍。倍频的绿色激光可以消除这一障碍,并具有巨大的潜力,可以大批量革新铜材料的激光焊接技术,并为将来的应用领域提供支持。在本文中,我们提出了使用新型的出色激光焊接铜和铜合金的新结果,该激光在绿色波长范围内发射(高达325 W @ 515 nm,2 mm mrad)。将结果与最先进的固态激光器进行比较,该激光器在红外波长范围内发射(最高1000 W @ 1030 nm,2 mm mrad)。对工艺不同阶段(加热,导热焊接,深熔焊)的吸收和能量耦合特性进行了基础研究,以了解更多关于铜合金焊接工艺的工艺稳定性和工艺​​可重复性的信息。使用绿色激光可以证明工艺可重复性显着提高。

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