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May 29, 2026Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control0 citations

Comparing the corrosion resistance of Cu–Ni alloys and electroless Ni-B and Ni-P coatings in seawater

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AZArman ZarebidakiDDDanesh Dadras

Key Points

  • This work investigates the corrosion resistance of Ni-B and Ni-P coatings on copper compared to Cu–Ni alloys in seawater.
  • Electroless deposition of Ni-B and Ni-P coatings on pure copper
  • Corrosion behavior assessed using electrochemical impedance spectroscopy and potentiodynamic polarization methods
  • Microstructure analyzed with X-ray diffraction and field emission scanning electron microscopy
  • Ni-P coating showed the highest corrosion resistance at 4.5 × 10 −7 A·cm −2
  • Ni-B coating had a corrosion resistance of 5.5 × 10 −7 A·cm −2
  • Cu–10Ni and Cu–20Ni exhibited superior resistance compared to pure copper at 1.2 × 10 −6 A·cm −2 and 1.1 × 10 −6 A·cm −2 respectively.

Abstract

Given the widespread use of cupronickel alloys in the marine industry, despite their higher cost than pure copper, this work explores the application of Ni-B and Ni-P coatings on pure copper as a potential alternative. Ni-6 wt-% B (Ni-B) and Ni-11 wt-% P (Ni-P) coatings were applied to a pure copper substrate using an electroless process. The microstructure and morphology of the coatings were analysed using X-ray diffraction and field emission scanning electron microscopy. The corrosion behaviour of the coatings, along with Cu–10 wt-% Ni (Cu–10Ni), Cu-20 wt-% Ni (Cu–20Ni), and pure copper, was investigated in simulated seawater using electrochemical impedance spectroscopy and potentiodynamic polarisation methods. The results showed that the Ni-P coating exhibited the highest corrosion resistance (4.5 × 10 −7 A·cm −2 ), followed by the Ni-B coating (5.5 × 10 −7 A·cm −2 ). The corrosion resistance of Cu–10Ni (1.2 × 10 −6 A·cm −2 ) and Cu–20Ni (1.1 × 10 −6 A·cm −2 ) was superior to that of pure copper (2.5 × 10 −6 A·cm −2 ). The corrosion mechanism of the alloys is influenced by both the charge transfer process and diffusion. Significant higher hardness of the Ni-B (930 ± 10 HV 100 ) and Ni-P (605 ± 5 HV 100 ) coatings compared to the bare alloys suggests improved tribological performance.

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Cite This Study

Zarebidaki et al. (2026) studied this question.

synapsesocial.com/papers/6a192dbbfab5b468c44168f2https://doi.org/10.1177/1478422x261451314
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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