• Chinese Journal of Lasers
  • Vol. 47, Issue 3, 302007 (2020)
Qin Yingxiong*, Zhang Huaizhi, Chang Siyi, Pan Xinyu, and Tang Xiahui
Author Affiliations
  • National Engineering Research Center for Laser Processing, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China
  • show less
    DOI: 10.3788/CJL202047.0302007 Cite this Article Set citation alerts
    Qin Yingxiong, Zhang Huaizhi, Chang Siyi, Pan Xinyu, Tang Xiahui. Laser Cladding Optical System with Variable Circular Light Spot Based on Adaptive Mirror[J]. Chinese Journal of Lasers, 2020, 47(3): 302007 Copy Citation Text show less
    Reflective variable spot focusing system
    Fig. 1. Reflective variable spot focusing system
    Equivalent optical path diagram of variable spot optical system
    Fig. 2. Equivalent optical path diagram of variable spot optical system
    Relationship between spot radius and focal length adjustment range of adaptive mirror
    Fig. 3. Relationship between spot radius and focal length adjustment range of adaptive mirror
    Relationship between spot radius and focal length of the collimating mirror
    Fig. 4. Relationship between spot radius and focal length of the collimating mirror
    Relationship between spot radius and focal length of the focusing mirror
    Fig. 5. Relationship between spot radius and focal length of the focusing mirror
    Distribution of light field in the cross-section of light spot under different focal lengths of deforming mirror. (a) F0=-2.5 m; (b) F0=-10 m; (c) F0=∞; (d) F0=+10 m; (e) F0=+2.5 m
    Fig. 6. Distribution of light field in the cross-section of light spot under different focal lengths of deforming mirror. (a) F0=-2.5 m; (b) F0=-10 m; (c) F0=∞; (d) F0=+10 m; (e) F0=+2.5 m
    Optical system with variable spot for laser cladding
    Fig. 7. Optical system with variable spot for laser cladding
    Laser spot size on working plane at different air pressures of adaptive mirror. Corresponding cavity pressure , focal length of adaptive mirror and spot diameter are (a) 550 kPa, -2.97 m, 3.1 mm; (b) 410 kPa, -6.79 m, 4.0 mm; (c) 380 kPa, -9.37 m, 5.7 mm; (d) 300 kPa, 588.23 m, 7.1 mm; (e) 250 kPa, 14.40 m, 7.9 mm
    Fig. 8. Laser spot size on working plane at different air pressures of adaptive mirror. Corresponding cavity pressure , focal length of adaptive mirror and spot diameter are (a) 550 kPa, -2.97 m, 3.1 mm; (b) 410 kPa, -6.79 m, 4.0 mm; (c) 380 kPa, -9.37 m, 5.7 mm; (d) 300 kPa, 588.23 m, 7.1 mm; (e) 250 kPa, 14.40 m, 7.9 mm
    Variable spot focusing system
    Fig. 9. Variable spot focusing system
    Variable-spot cladding workpiece produced by laser cladding
    Fig. 10. Variable-spot cladding workpiece produced by laser cladding
    Qin Yingxiong, Zhang Huaizhi, Chang Siyi, Pan Xinyu, Tang Xiahui. Laser Cladding Optical System with Variable Circular Light Spot Based on Adaptive Mirror[J]. Chinese Journal of Lasers, 2020, 47(3): 302007
    Download Citation