高功率激光合束器工作可靠性能评估方法研究
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TH744 TN248

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陕西省教育厅服务地方专项计划项目(19JC040)、陕西省省重点研发计划项目(2020GY118)、国家重点研发计划项目(2017YFB0405102)资助


Research on evaluation method of high power laser beam combiner working reliability
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    摘要:

    为降低高功率激光在单根光纤中的传输风险,提出基于多光纤传输的激光非相干空间合束 19×1 圆斑合束器。 基于 “内外同心圆+中心”同轴排列方式,采用光线追迹法进行合束器的光学设计,同时为实现合束器长期运行可靠性评估,基于多 激光束同步照射光学元件的体吸收模型,采用有限元方法对合束器内部透镜的温度、热畸变和热应力等进行研究。 结果表明, 在 10 kW 激光照射 30 mins 下,合束器内部透镜的最高温度为 381. 11 K,远低于熔融石英 1 900 K 的软化点温度,热畸变相关的 最大光圈数为 0. 07,远小于 1 个光圈数的透镜加工公差,热应力最大值为 14. 02 MPa,小于熔融石英 4. 5 GPa 的屈服应力。 此 外实验测得合束器输出总功率可达 10. 43 kW。 本研究对评价其他高功率激光系统的长期运行可靠性提供了有效的方法参考。

    Abstract:

    To reduce the transmission risk of high-power laser in a single fiber, a 19×1 incoherent space laser beam combiner with circular spot based on multiple optical fiber transmission was presented. The coaxial close arrangement based on “ inner and outer concentric circles + center” is applied in the optical design of the combiner, and the lenses parameters of the combiner are obtained by ray tracing method. Simultaneously, to evaluate the long-term operation reliability of the 19 × 1 laser beam combiner accurately, the coupled thermo-mechanical characteristics of all optics in the beam combiner is analyzed, to clarify the distributions and evolution laws of temperature field and thermal stress field of optics by using the finite element method ( FEM). The multi-beam laser volumetric heat source model is established based on the overall heat source distribution of 19 laser beams synchronously transmitted optical lenses. Then, the temperature field, thermal displacement and stress of optics are simulated. Results show under the irradiation of 10 kW laser for 30 minutes, the temperature of all optical lenses in the beam combiner with the maximum of 381. 11 K is far lower than the softening temperature of 1 900 K of the fused silica material. The thermal deformation with the maximum corresponding aperture number of 0. 07 is within the design tolerance, and stress with the maximum of 14. 02 MPa is less than the yield stress of 4. 5 GPa of the fused silica. In addition, the total laser power output by the beam combiner can reach 10. 43 kW . The study provides an effective method reference for evaluating the long-term operation reliability of other high-power laser source.

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田 晓,李 奔,白 杨,康宇栋,胡子豪.高功率激光合束器工作可靠性能评估方法研究[J].仪器仪表学报,2022,43(9):106-114

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  • 在线发布日期: 2023-02-06
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