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Long-pulse high-repetition-rate transversely excited CO2 laser for material processing

机译:长脉冲高重复率横向激发CO2激光材料加工

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Abstract: Using a TE-CO2 laser, we could obtain a long-pulsed laser beam of low initial spike by controlling the discharge current by a pulse forming network and optimizing the gas composition, discharge length to resonator length ratio, and output mirror reflectivity. The maximum laser output was 1.1 J; the initial spike energy, 100 kW; the tail output, 56 kW; and the 16 $mu sec (FWHM). The maximum repetition rate was 500 Hz. A new type of circuit with small pre-ionization current made it possible to operate the laser at a high repetition rate so as to prolong the laser life. When a 5-inch lens was used, the laser power density at the focal point was 1*10$+8$/ W/cm$+2$/, making it possible to use the laser with an unusually high energy density without causing the breakdown of air insulation. In fact, we succeeded in fine- cutting a 0.5 mm thick alumina ceramic with the laser. It was found that unlike other working methods, the newly developed laser does not cause cracks in ceramic work pieces. !10
机译:摘要:使用TE-CO2激光器,通过脉冲形成网络控制放电电流并优化气体成分,放电长度与谐振器长度之比以及输出镜反射率,可以获得低初始尖峰的长脉冲激光束。最大激光输出为1.1 J;初始峰值能量100 kW;尾功率56 kW;和16 $ mu sec(FWHM)。最大重复频率为500 Hz。一种新型的具有小的预电离电流的电路,使得可以高重复频率操作激光器,从而延长了激光器的寿命。当使用5英寸透镜时,焦点处的激光功率密度为1 * 10 $ + 8 $ / W / cm $ + 2 $ /,因此可以使用能量密度异常高的激光器而不会引起空气绝缘的破坏。实际上,我们成功地用激光切割了0.5毫米厚的氧化铝陶瓷。已发现,与其他加工方法不同,新开发的激光不会在陶瓷工件中引起裂纹。 !10

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