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Femtosecond laser ablation of brass: A study of surface morphology and ablation rate

机译:飞秒激光烧蚀黄铜:表面形貌和烧蚀率的研究

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The interaction of near infrared femtosecond laser pulses with a Cu based alloy(brass)in ambient air at atmospheric pressure and under different laser conditions was investigated. The effects of laser fluence and number of pulses on surface morphology and ablation rate were studied using scanning electron microscopy(SEM)and optical microscopy. Ablation rates were found to rapidly increase from 83 to 604nm/pulse in the fluence range 1.14-12.21 J/cm2. At fluence >12.21 J/cm2, ablation rates increased slowly to a maximum(607 nm/pulse at 19.14 J/cm2), and then decreased at fluence higher than 20.47 J/cm2 to 564 nm/pulse at 24.89 J/cm2. Large amounts of ablated material in a form of agglomerated fine particles were observed around the ablation craters as the number of laser pulses and fluence increased. The study of surface morphology shows reduced thermal effects with femtosecond laser ablation in comparison to nanosecond laser ablation at low fluence.
机译:研究了大气中大气压下以及不同激光条件下近红外飞秒激光脉冲与Cu基合金(黄铜)的相互作用。利用扫描电子显微镜(SEM)和光学显微镜研究了激光能量密度和脉冲数对表面形貌和烧蚀率的影响。发现在注量范围1.14-12.21J / cm 2下,消融速率从83nm /脉冲迅速增加。在通量> 12.21 J / cm2时,烧蚀速率缓慢增加到最大值(在19.14 J / cm2时为607 nm /脉冲),然后在高于20.47 J / cm2的通量下以24.89 J / cm2的速度下降到564 nm /脉冲。随着激光脉冲数量和注量的增加,在烧蚀坑附近观察到大量的以团聚细颗粒形式存在的烧蚀材料。表面形态的研究表明,与低通量的纳秒激光烧蚀相比,飞秒激光烧蚀降低了热效应。

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