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Effects of picosecond laser repetition rate on ablation of Cr12MoV cold work mold steel

机译:皮秒激光重复频率对Cr12MoV冷作模具钢烧蚀的影响

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In this paper, the effects of pulse repetition rate on ablation efficiency and quality of Cr12MoV cold work mold steel have been studied using a picosecond (ps) pulse Nd:YVO4 laser system at lambda=1064 nm. The experimental results of area ablation on target surface reveal that laser repetition rate plays a significant role in controlling ablation efficiency and quality. Increasing the laser repetition rate, while keeping a constant mean power improves the ablation efficiency and quality. For each laser mean power, there is an optimal repetition rate to achieve a higher laser ablation efficiency with low surface roughness. A high ablation efficiency of 42.29, 44.11 and 47.52 mu m(3)/mJ, with surface roughness of 0.476, 0.463 and 0.706 pAn could be achieved at laser repetition rate of 10 MHz, for laser mean power of 15, 17 and 19 W, respectively. Scanning electron microcopy images revels that the surface morphology evolves from rough with numerous craters, to flat without pores when we increased the laser repetition rate. The effects of laser repetition rate on the heat accumulation, plasma shield and ablation threshold were analyzed by numerical simulation, spectral analysis and multi-laser shot, respectively. The synergetic effects of laser repetition rate on laser ablation rate and machining quality were analyzed and discussed systemically in this paper. (C) 2017 Elsevier B.V. All reserved.
机译:在本文中,使用皮秒(ps)脉冲Nd:YVO4激光系统(λ= 1064 nm)研究了脉冲重复频率对Cr12MoV冷作模具钢的烧蚀效率和质量的影响。目标表面区域烧蚀的实验结果表明,激光重复频率在控制烧蚀效率和质量方面起着重要作用。在保持恒定平均功率的同时提高激光重复频率可提高烧蚀效率和质量。对于每个激光平均功率,都有一个最佳的重复频率,以实现较高的激光烧蚀效率和较低的表面粗糙度。在激光重复频率为10 MHz,激光平均功率为15、17和19 W的情况下,可以实现42.29、44.11和47.52μm(3)/ mJ的高烧蚀效率,表面粗糙度为0.476、0.463和0.706 pAn。 , 分别。扫描电子显微镜图像显示,当我们增加激光重复频率时,表面形态会从具有多个弹坑的粗糙状态演变为无孔的平坦状态。分别通过数值模拟,光谱分析和多激光发射分析了激光重复频率对热量累积,等离子体屏蔽和烧蚀阈值的影响。本文系统地分析和讨论了激光重复频率对激光烧蚀速度和加工质量的协同作用。 (C)2017 Elsevier B.V.保留所有权利。

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