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3 kW single stage all-fiber Yb-doped single-mode fiber laser for highly reflective and highly thermal conductive materials processing

机译:3 kW单级全光纤掺Yb单模光纤激光器,用于高反射和高导热材料加工

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摘要

A 3 kW single stage all-fiber Yb-doped single-mode fiber laser with bi-directional pumping configuration has been demonstrated. Our newly developed high-power LD modules are employed for a high available pump power of 4.9 kW. The length of the delivery fiber is 20 m which is long enough to be used in most of laser processing machines. An output power of 3 kW was achieved at a pump power of 4.23 kW. The slope efficiency was 70%. SRS was able to be suppressed at the same output power by increasing ratio of backward pump power. The SRS level was improved by 5dB when 57% backward pump ratio was adopted compared with the case of 50%. SRS was 35dB below the laser power at the output power of 3 kW even with a 20-m delivery fiber. The M-squared factor was 1.3. Single-mode beam quality was obtained. To evaluate practical utility of the 3 kW single-mode fiber laser, a Bead-on-Plate (BoP) test onto a pure copper plate was executed. The BoP test onto a copper plate was made without stopping or damaging the laser system. That indicates our high power single-mode fiber lasers can be used practically in processing of materials with high reflectivity and high thermal conductivity.
机译:已经证明了具有双向泵浦配置的3 kW单级全光纤掺Yb单模光纤激光器。我们新开发的大功率LD模块用于提供4.9 kW的高可用泵浦功率。传输光纤的长度为20 m,足以在大多数激光加工机中使用。在4.23 kW的泵浦功率下实现了3 kW的输出功率。斜率效率为70%。通过增加反向泵浦功率的比率,可以在相同的输出功率下抑制SRS。与采用50%的情况相比,采用57%的反向泵率时,SRS的水平提高了5dB。即使使用20米传输光纤,在3 kW的输出功率下,SRS仍比激光功率低35dB。 M平方因子是1.3。获得了单模光束质量。为了评估3 kW单模光纤激光器的实用性,在纯铜板上执行了Bead-on-Plate(BoP)测试。在没有停止或损坏激光系统的情况下,在铜板上进行了BoP测试。这表明我们的高功率单模光纤激光器可实际用于具有高反射率和高导热率的材料的加工。

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  • 来源
    《Fiber Lasers XIV: Technology and Systems》|2017年|100830Y.1-100830Y.6|共6页
  • 会议地点 San Francisco(US)
  • 作者单位

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

    Advanced Technology Laboratory, Fujikura Ltd., 1440, Mutsuzaki, Sakura, Chiba, 285-8550, Japan;

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  • 正文语种 eng
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