High-speed formation of pure copper layers via multibeam laser metal deposition with blue lasers

被引:0
|
作者
Takenaka, Keisuke [1 ]
Yoshida, Tamaki [2 ]
Yamashita, Yorihiro [3 ]
Sato, Yuji [1 ]
Tsukamoto, Masahiro [1 ]
机构
[1] Osaka Univ, Joining & Welding Res Inst, 11-1 Mihogaoka, Ibaraki, Osaka 5670047, Japan
[2] Osaka Univ, Grad Sch Engn, 1-1 Yamadaoka, Suita, Osaka 5650871, Japan
[3] Univ Fukui, Fac Engn, 3-9-1 Bunkyo, Fukui, Japan
关键词
blue diode laser; multi-beam laser deposition; pure copper;
D O I
10.2351/7.0001649
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To realize a carbon-neutral society, it is necessary to shift from gasoline-powered vehicles to electric vehicles. Electric vehicles use copper components such as coil motors and batteries for which copper joining technology is important. Additive manufacturing is one of the most essential technologies for the next generation of manufacturing. Therefore, the technology for forming pure copper layer on a pure copper substrate is important. Laser metal deposition (LMD) is one of the additive manufacturing technologies. A blue diode laser is expected to be effective in shaping pure copper parts because light absorptance of pure copper at blue light is higher than that of near-infrared light. Thus, a multibeam LMD system with the blue diode laser in which metal powder was supplied perpendicular to the processing point and multiple lasers were irradiated from the surroundings was developed for additively manufactured pure copper. In our previous study, we succeeded in forming a pure copper layer on a pure copper substrate at a speed of 1.5 mm/s with blue diode lasers. However, an increase in processing speed was necessary for industrial application. It is considered that the improvement of energy density at the processing point and the control of heat input to the powder and the substrate by lasers are essential to improve the processing speed. Therefore, in this study, we designed an optical system with ten times higher energy density and calculated the heat input to the powder to form a pure copper layer at a speed of 10 mm/s or faster.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] LASER FLASH-PHOTOLYSIS IN HIGH-SPEED PHOTOPOLYMER COATING LAYERS
    URANO, T
    NGUYEN, KO
    NAGASAKA, H
    TSUCHIYAMA, M
    SHIMIZU, S
    ITOH, H
    SENDA, Y
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1994, 67 (04) : 1074 - 1077
  • [42] High-speed sequential deposition of photoactive layers for organic solar cell manufacturing
    Rui Sun
    Tao Wang
    Xinrong Yang
    Yao Wu
    Yang Wang
    Qiang Wu
    Maojie Zhang
    Christoph J. Brabec
    Yongfang Li
    Jie Min
    Nature Energy, 2022, 7 : 1087 - 1099
  • [43] High-speed sequential deposition of photoactive layers for organic solar cell manufacturing
    Sun, Rui
    Wang, Tao
    Yang, Xinrong
    Wu, Yao
    Wang, Yang
    Wu, Qiang
    Zhang, Maojie
    Brabec, Christoph J.
    Li, Yongfang
    Min, Jie
    NATURE ENERGY, 2022, 7 (11) : 1087 - 1099
  • [44] A study on the additive manufacturing of a high chromium Nickel-based superalloy by extreme high-speed laser metal deposition
    Wang, Kaiming
    Du, Dong
    Liu, Guan
    Pu, Ze
    Chang, Baohua
    Ju, Jiang
    OPTICS AND LASER TECHNOLOGY, 2021, 133 (133):
  • [45] High-speed InGaAs metal-semiconductor-metal photodetectors with thin absorption layers
    Wohlmuth, WA
    Fay, P
    Vaccaro, K
    Martin, EA
    Adesida, I
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1997, 9 (05) : 654 - 656
  • [46] PROCESS PREDICTION FOR REPAIR OF HIGH-SPEED TRAIN WHEELSEAT AXLE BY EXTREME HIGH-SPEED LASER MATERIAL DEPOSITION (EHLA)
    Li, Tianci
    Zhang, Lele
    Chen, Geng
    Schopphoven, Thomas
    Gasser, Andres
    Poprawe, Reinhart
    PROCEEDINGS OF ASME 2021 INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION (IMECE2021), VOL 2A, 2021,
  • [47] LASER-ENHANCED PLATING - HIGH-SPEED DEPOSITION WITH VLSI APPLICATIONS
    VONGUTFELD, RJ
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1985, 132 (08) : C356 - C356
  • [48] Hydrodynamic instability in high-speed direct laser deposition for additive manufacturing
    Turichin, Gleb
    Zemlyakov, Evgeny
    Klimova, Olga
    Babkin, Konstantin
    LASER ASSISTED NET SHAPE ENGINEERING 9 INTERNATIONAL CONFERENCE ON PHOTONIC TECHNOLOGIES PROCEEDINGS OF THE LANE 2016, 2016, 83 : 674 - 683
  • [49] HIGH-SPEED ENGINEERING CERAMIC COATING BY LASER CHEMICAL VAPOR DEPOSITION
    Goto, Takashi
    Kimura, Teiichi
    Tu, Rong
    CERAMIC MATERIALS AND COMPONENTS FOR ENERGY AND ENVIRONMENTAL APPLICATIONS, 2010, 210 : 363 - 369
  • [50] Development of a high-speed laser material deposition process for additive manufacturing
    Schaible, Jonathan
    Sayk, Lennart
    Schopphoven, Thomas
    Schleifenbaum, Johannes Henrich
    Haefner, Constantin
    JOURNAL OF LASER APPLICATIONS, 2021, 33 (01)