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IJAT Vol.20 No.5 pp. 411-417
(2026)

Research Paper:

Pure Copper Coating Layer Formation via Uniform Heating of Metal Powders and Substrates Using Multi-Beam Metal Powder Deposition with Rectangular Profile Blue Diode Lasers

Keisuke Takenaka*,† ORCID Icon, Yuji Sato* ORCID Icon, Peng Chen** ORCID Icon, Takayuki Mokudai*,*** ORCID Icon, Hiroyasu Kanetaka** ORCID Icon, and Masahiro Tsukamoto*

*Joining and Welding Research Institute, The University of Osaka
11-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan

Corresponding author

**Graduate School of Dentistry, Tohoku University
Sendai, Japan

***Institute for Materials Research, Tohoku University
Sendai, Japan

Received:
February 26, 2026
Accepted:
June 15, 2026
Published:
September 5, 2026
Keywords:
blue diode laser, laser metal deposition, rectangular beam profile, pure copper
Abstract

A high-efficiency, high-quality coating technology for pure copper was developed using a multi-beam metal powder deposition method with a rectangular beam profile at the processing point. Pure copper is a metal with antibacterial properties and high thermal and electrical conductivity. Its use in multi-material applications via metal powder deposition is expected to conserve resources and further expand its applications. In this study, a pure copper layer was formed on a stainless-steel substrate using a blue diode laser with high light absorption in pure copper and a rectangular top-hat beam capable of uniform heating of both the substrate and pure copper powder. Compared with a circular beam, the rectangular beam improved layer formation efficiency up to twofold and was also found to reduce dilution, the mixed layer between the layer and substrate. The pure copper layer formed using the rectangular beam exhibited a smaller difference in dilution between the center and edge of the cross-section compared to the circular beam. This demonstrates that the rectangular beam achieves uniform heating, which is beneficial for layer formation using the multi-beam metal powder deposition method.

Conceptual diagram using a rectangular beam

Conceptual diagram using a rectangular beam

Cite this article as:
K. Takenaka, Y. Sato, P. Chen, T. Mokudai, H. Kanetaka, and M. Tsukamoto, “Pure Copper Coating Layer Formation via Uniform Heating of Metal Powders and Substrates Using Multi-Beam Metal Powder Deposition with Rectangular Profile Blue Diode Lasers,” Int. J. Automation Technol., Vol.20 No.5, pp. 411-417, 2026.
Data files:
References
  1. [1] G. Grass, C. Rensing, and M. Solioz, “Metallic copper as an antimicrobial surface,” Appl. Environ. Microbiol., Vol.77, pp. 1541-1547, 2011. https://doi.org/10.1128/aem.02766-10
  2. [2] J. Konieczny and Z. Rdzawski, “Antibacterial properties of copper and its alloys,” Arch. Mater. Sci. Eng., Vol.56, Issue 2, pp. 53-60, 2012.
  3. [3] Japan Copper Development Association, “Test data on the antimicrobial and antiviral properties of copper,” (in Japanese). https://www.jcda.or.jp/speciality/koukin/contents01/index.html [Accessed February 25, 2026]
  4. [4] The Japan Institute of Metals and Materials, “Metal Handbook,” Maruzen, 2004.
  5. [5] K. Asano, M. Tsukamoto, Y. Sechi, Y. Sato, S. Masuno, R. Higashino, T. Hara, M. Sengoku, and M. Yoshida, “Laser metal deposition of pure copper on stainless steel with blue and IR diode laser,” Opt. Laser Technol., Vol.107, pp. 291-296, 2018. https://doi.org/10.1016/j.optlastec.2018.06.012
  6. [6] K. Takenaka, Y. Sato, K. Ono, Y. Funada, and M. Tsukamoto, “Pure copper layer formation on stainless-steel and aluminum substrate with a multibeam laser metal deposition system with blue diode laser,” J. Laser Appl., Vol.33, Article No.042033, 2021. https://doi.org/10.2351/7.0001645
  7. [7] K. Morimoto, Y. Sato, K. Takenaka, Y. Funada, Y. Hayashi, N. Abe, and M. Tsukamoto, “Effect of particle size distribution on pure copper layer formation in a multi-beam laser cladding system with pure copper powder and two blue diode lasers,” Appl. Phys. A, Vol.129, Article No.12, 2023. https://doi.org/10.1007/s00339-022-06187-4

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Last updated on Sep. 04, 2026