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Investigation on the Laser Surface Treatment of Steel and Aluminum with a Single-Mode Pulsed Fiber Laser Source

机译:单模脉冲光纤激光源对钢和铝进行激光表面处理的研究

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摘要

The effects of modifying the microstructure of a surface on its macroscopic properties have been studied intensively in the last decade, a well-known example being the generation of superhydrophobic surfaces with laser beams. For such kind of surface treatment, where the surface roughness (R_a value) is typically either increased or decreased, pulsed fiber lasers are an excellent tool. By focusing energy into a small spot on the surface, local intensity greater than the ablation threshold of the material can be reached and a portion of it is removed from the surface. Controlling the size and spacing of each of these holes or trenches allows to precisely modify the roughness (R_a value). For this study, we used a single-mode pulsed fiber laser with 100 ns pulse duration and up to 1 mJ pulse energy combined with a high-speed galvanometer scanner. Several parameters of the process were optimized in order to determine the induced roughness rate (cm~2/s for different R_z values) achievable at full power on steel and aluminum.
机译:在过去的十年中,对表面微观结构改变对其宏观性能的影响进行了深入研究,一个著名的例子是用激光束产生超疏水表面。对于这种表面处理,通常会增加或减少表面粗糙度(R_a值),脉冲光纤激光器是一种出色的工具。通过将能量聚焦到表面上的一个小点上,可以达到大于材料烧蚀阈值的局部强度,并将其一部分从表面上去除。控制这些孔或沟槽中的每一个的尺寸和间距允许精确地改变粗糙度(R_a值)。在本研究中,我们使用了具有100 ns脉冲持续时间和高达1 mJ脉冲能量的单模脉冲光纤激光器以及高速振镜扫描仪。为了确定在钢和铝的全功率下可达到的诱导粗糙度(对于不同的R_z值,cm〜2 / s),优化了该工艺的几个参数。

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