Chinese Journal of Lasers, Volume. 50, Issue 24, 2402303(2023)

Laser Powder Bed Fusion Fabrication of Sn‑3.0Ag‑0.5Cu (SAC305) Alloys Without Protective Atmosphere: Process and Mechanical Properties

Jiaming Yu, Yongqiang Yang, Trofimov Vyacheslav, Di Wang*, Jinhui Huang, Yan Wang, and Hanxiang Zhou
Author Affiliations
  • School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, Guangdong , China
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    Figures & Tables(15)
    SEM images of SAC305 powder
    Surface morphology of LPBF fabricated SAC305 samples. (a) SAC305 samples and tensile specimen; (b) local amplification of tensile specimen; (c) surface morphology of tensile specimen
    Top-surface morphologies of LPBF fabricated SAC305 samples at different process parameters. (a) Laser power of 30 W and scanning speed of 500 mm∙s-1; (b) laser power of 30 W and scanning speed of 700 mm∙s-1; (c) laser power of 30 W and scanning speed of 1100 mm∙s-1; (d) laser power of 25 W and scanning speed of 1300 mm∙s-1; (e) laser power of 20 W and scanning speed of 1300 mm∙s-1; (f) laser power of 15 W and scanning speed of 1300 mm∙s-1
    Density distributions of SAC305 samples under different LPBF process windows
    Compactness and conductivity of LPBF fabricated SAC305 samples. (a) Laser energy density versus relative density; (b) relative density versus conductivity; (c) mechanism of influence of pore defect on conductivity
    Mechanical properties of LPBF fabricated SAC305 alloy. (a) Stress-strain curves under different process parameters; (b) mechanical properties under different process parameters
    Fracture morphologies of SAC305 tensile specimens under different LPBF process parameters. (a) Laser power of 30 W and scanning speed of 500 mm∙s-1; (b) laser power of 30 W and scanning speed of 900 mm∙s-1; (c) laser power of 30 W and scanning speed of 1300 mm∙s-1; (d) laser power of 15 W and scanning speed of 500 mm∙s-1
    XRD spectra of LPBF fabricated SAC305 samples. (a) XRD spectra of SAC305 sample processed under laser power of 30 W and scanning speed of 500 mm∙s-1; (b) XRD spectra of samples under different laser powers
    SEM image and element distribution maps of LPBF fabricated SAC305 sample. (a) Longitudinal section of sample processed under laser power of 30 W and scanning speed of 500 mm∙s-1; (b) element distribution maps
    EDS line scanning. (a) Scanning position; (b) analysis results
    Spatter during LPBF formation of SAC305 alloy under different process parameters. (a) Laser power of 30 W and scanning speed of 900 mm∙s-1 (formed tensile specimen); (b) laser power of 30 W and scanning speed of 900 mm∙s-1 (formed cube sample); (c) laser power of 30 W and scanning speed of 500 mm∙s-1 (formed tensile specimen); (d) laser power of 15 W and scanning speed of 900 mm∙s-1 (formed cube sample)
    Mechanism diagram of forming SAC305 by LPBF without protective atmosphere
    • Table 1. Parameters of equipment

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      Table 1. Parameters of equipment

      ParameterValue
      Maximum laser power /W30
      Focal length /mm150
      Laser beam wavelength /nm1064
      Laser beam quality factor M2≤1.1
      Spot scanning speed /(m·s-10‒7
      Laser spot diameter /μm60‒80
      Layer thickness /μm20‒50
      Maximum formable size /(mm×mm)Φ70×50
      Size of equipment /(mm×mm×mm)720×780×1400
    • Table 2. Chemical compositions of SAC305 alloy

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      Table 2. Chemical compositions of SAC305 alloy

      ElementSnAgCu
      Mass fraction /%Bal.2.93860.4875
    • Table 3. Process parameters of LPBF forming SAC305 samples

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      Table 3. Process parameters of LPBF forming SAC305 samples

      Sample No.Laser power /WScanning speed /(mm∙s-1Laser energy density /(J∙mm-3
      13050028.57
      23070020.41
      33090015.87
      430110012.99
      530130010.99
      62550023.81
      72570017.01
      82590013.23
      925110010.82
      102513009.16
      112050019.05
      122070013.61
      132090010.58
      142011008.66
      152013007.33
      161550014.29
      171570010.20
      18159007.94
      191511006.49
      201513005.49
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    Jiaming Yu, Yongqiang Yang, Trofimov Vyacheslav, Di Wang, Jinhui Huang, Yan Wang, Hanxiang Zhou. Laser Powder Bed Fusion Fabrication of Sn‑3.0Ag‑0.5Cu (SAC305) Alloys Without Protective Atmosphere: Process and Mechanical Properties[J]. Chinese Journal of Lasers, 2023, 50(24): 2402303

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    Paper Information

    Category: Laser Additive Manufacturing

    Received: Apr. 3, 2023

    Accepted: Jun. 13, 2023

    Published Online: Oct. 24, 2023

    The Author Email: Wang Di (mewdlaser@scut.edu.cn)

    DOI:10.3788/CJL230675

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