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Laser surface texturing of cast iron steel: dramatic edge burr reduction and high speed process optimisation for industrial production using DPSS picosecond lasers

机译:铸铁的激光表面纹理化:使用DPSS皮秒激光器大幅减少边缘毛刺并实现工业生产的高速工艺优化

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In this work we present picosecond DPSS laser surface texturing optimisation of automotive grade cast iron steel. This application attracts great interest, particularly in the automotive industry, to reduce friction between moving piston parts in car engines, in order to decrease fuel consumption. This is accomplished by partially covering with swallow microgrooves the inner surface of a piston liner and is currently a production process adopting much longer pulse (microsecond) DPSS lasers. Lubricated interface conditions of moving parts require from the laser process to produce a very strictly controlled surface topography around the laser formed grooves, whose edge burr height must be lower than 100 nm. To achieve such a strict tolerance, laser machining of cast iron steel was investigated using an infrared DPSS picosecond laser (10ps duration) with an output power of 16W and a repetition rate of 200 kHz. The ultrashort laser is believed to provide a much better thermal management of the etching process. All studies presented here were performed on flat samples in ambient air but the process is transferrable to cylindrical geometry engine liners. We will show that reducing significantly the edge burr below an acceptable limit for lubricated engine production is possible using such lasers and remarkably the process window lies at very high irradiated fluences much higher that the single pulse ablation threshold. This detailed experimental work highlights the close relationship between the optimised laser irradiation conditions as well as the process strategy with the final size of the undesirable edge burrs. The optimised process conditions are compatible with an industrial production process and show the potential for removing extra post)processing steps (honing, etc) of cylinder liners on the manufacturing line saving time and cost. This work is part funded by Innovate UK, project SLIDE, No. 101558.
机译:在这项工作中,我们提出了汽车级铸铁皮秒级DPSS激光表面纹理优化。该应用引起了极大的兴趣,尤其是在汽车工业中,以减少汽车发动机中运动的活塞部件之间的摩擦,从而减少燃料消耗。这是通过用燕子形微槽部分覆盖活塞衬套的内表面来实现的,并且目前是采用更长脉冲(微秒)DPSS激光器的生产工艺。运动部件的润滑界面条件要求激光加工在激光形成的凹槽周围产生非常严格控制的表面形貌,该凹槽的边缘毛刺高度必须低于100 nm。为了达到这样严格的公差,研究了使用红外DPSS皮秒激光(持续时间10ps),输出功率为16W,重复频率为200 kHz的铸铁激光加工。据信,超短激光可提供更好的蚀刻工艺热管理。这里介绍的所有研究都是在环境空气中的扁平样品上进行的,但该过程可转移到圆柱几何发动机缸套上。我们将表明,使用此类激光器可以将边缘毛刺显着降低至润滑发动机生产的可接受极限以下,并且显着地,工艺窗口处在非常高的辐照通量上,该通量远高于单脉冲烧蚀阈值。这项详细的实验工作突显了优化的激光辐照条件以及工艺策略与不良边缘毛刺的最终尺寸之间的密切关系。优化的工艺条件与工业生产工艺兼容,并显示了在生产线上去除汽缸套额外的后处理步骤(珩磨等)的潜力,从而节省了时间和成本。这项工作由英国创新基金会(Innovate UK)资助,项目编号:SLIDE,编号101558。

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