Investigation of Cutting Quality of Remote DOE Laser Cutting in 0.5 mm Stainless Steel

Sigurd Lazic Villumsen, Morten Kristiansen
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Abstract

It has previously been shown that the stability of the remote fusion cutting (RFC) process can be increased by modifying the intensity profile of the laser by means of a diffractive optical element (DOE). This paper investigates the quality of remote DOE cutting (RDC) conducted with a 3 kW single mode fiber laser in 0.5 mm stainless steel. An automatic measurement system is used to investigate how the travel speed, focus offset and angle of incidence effect the kerf width and kerf variance. The study shows that the RDC process has a very low kerf width variance, and that the kerf width decreases with cutting speed. Furthermore, selected etched samples show a significant increase in the perpendicularity of the cuts when compared to RFC. Also, on average, the depth of the layer of molten material for RFC is 83% deeper than for RDC.

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0.5 mm不锈钢远程DOE激光切割质量研究
以前的研究表明,通过衍射光学元件(DOE)来改变激光的强度分布,可以提高远程融合切割(RFC)过程的稳定性。本文研究了用3kw单模光纤激光器在0.5 mm不锈钢上进行远程DOE切割(RDC)的质量。采用自动测量系统,研究了入射速度、对焦偏移和入射角对切口宽度和切口方差的影响。研究表明,RDC加工的刀缝宽度变化非常小,而且刀缝宽度随切削速度的增加而减小。此外,与RFC相比,选定的蚀刻样品显示切割的垂直度显着增加。此外,平均而言,RFC的熔融材料层深度比RDC深83%。
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