李明雨, 叶继飞, 于程浩, 杨青林, 孔红杰. 纳秒脉宽激光烧蚀典型金属推进性能实验研究[J]. 红外与激光工程, 2021, 50(S2): 20210277. DOI: 10.3788/IRLA20210277
引用本文: 李明雨, 叶继飞, 于程浩, 杨青林, 孔红杰. 纳秒脉宽激光烧蚀典型金属推进性能实验研究[J]. 红外与激光工程, 2021, 50(S2): 20210277. DOI: 10.3788/IRLA20210277
Li Mingyu, Ye Jifei, Yu Chenghao, Yang Qinglin, Kong Hongjie. Experimental study on propulsive performance of typical metal ablated by nanosecond pulse width laser[J]. Infrared and Laser Engineering, 2021, 50(S2): 20210277. DOI: 10.3788/IRLA20210277
Citation: Li Mingyu, Ye Jifei, Yu Chenghao, Yang Qinglin, Kong Hongjie. Experimental study on propulsive performance of typical metal ablated by nanosecond pulse width laser[J]. Infrared and Laser Engineering, 2021, 50(S2): 20210277. DOI: 10.3788/IRLA20210277

纳秒脉宽激光烧蚀典型金属推进性能实验研究

Experimental study on propulsive performance of typical metal ablated by nanosecond pulse width laser

  • 摘要: 为研究不同金属材料的激光烧蚀推进性能,对常见的七种金属材料:Al,Fe,Ni,Cu,Y,Ag,Au,使用波长1 064 nm,脉宽8 ns的Nd:YAG激光器在大气下进行烧蚀,测量了烧蚀质量、冲量、冲量耦合系数、比冲和能量转化效率等推进性能参数,获得了激光功率密度对推进性能的影响规律。实验结果表明:相同激光功率密度下,Fe的烧蚀质量最大,Y的烧蚀质量最小;Al,Au,Cu的冲量较大,Ag的冲量最小;Au的冲量耦合系数和比冲均值在七种金属材料中最大,分别在激光功率密度为1.72 \times 10^10\;\rmW/\rmc\rmm^22.98 \times 10^10\;\rmW/\rmc\rmm^2时达到40.7 μN/W和500 s的最大值,平均能量转化效率可达6%。

     

    Abstract: In order to study the laser ablation propulsion performance of different metal materials, an Nd:YAG laser with a wavelength of 1064 nm and a pulse width of 8 ns was used to ablate seven common metal materials: Al, Fe, Ni, Cu, Y, Ag and Au in the atmosphere. Propulsion performance parameters such as ablation mass, impulse, impulse coupling coefficient, specific impulse and energy conversion efficiency were measured, and the influence law of laser power density on propulsion performance was obtained. The experimental results show that under the same laser power density, the ablation amount of Fe is the largest, the ablation amount of Y is the smallest. The impulse of Al, Au and Cu is larger, while that of Ag is the least. Au's impulse coupling coefficient and specific impulse mean value are the largest among the seven metals, reaching the maximum value of 40.7 μN/W and 500 s when the laser power density is 1.72 \times 10^10\;\rmW/\rmc\rmm^2 and 2.98 \times 10^10\;\rmW/\rmc\rmm^2, respectively. The average energy conversion efficiency can reach 6%.

     

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