Detail publikace
Pulse-Driven Surface Hardening and Advanced Electrospark Alloying for Maritime Applications
MELNYK, O. ONISHCHENKO, O. KURDIUK, S. BULGAKOV, M. FOMIN, O. PÍŠTĚK, V. KUČERA, P.
Anglický název
Pulse-Driven Surface Hardening and Advanced Electrospark Alloying for Maritime Applications
Typ
Článek WoS
Jazyk
en
Originální abstrakt
This study examines advanced electrospark alloying (ESA) as a pulse-driven surface hardening technique for marine engineering components operating in corrosive and abrasive environments. Coatings were deposited using cobalt-based (Stellite 6), nickel-based (NiCrBSi), titanium-based (VT1-0), and boron-based (B4C) electrodes, with pulse energies of 0.2–0.5 J, discharge frequencies of 100–200 Hz, electrode feed rates of 5–8 mm/min, applied loads of 15–20 N, and treatment durations of 40–60 s. The effects of processing parameters on coating microstructure, adhesion strength, microhardness, corrosion resistance, and wear behaviour were systematically evaluated. ESA treatments increased microhardness by 35–48% and adhesion strength by 22–30%, while reducing the corrosion rate from 0.043 mm/year to 0.025–0.027 mm/year and lowering wear volume loss by 40–47%. Compared with high-velocity oxy-fuel (HVOF) spraying and laser hardening, ESA achieved 37–58% lower energy consumption and 40–70% lower CO₂ emissions. These findings highlight ESA as an energy-efficient and environmentally sustainable option for on-site maintenance and modernisation of maritime equipment.
Klíčová slova anglicky
maritime transport; marine engineering; equipment modernisation; on-site maintenance; electrospark alloying; marine components; wear-resistant coatings; corrosion resistance; pulse parameters; structural steel; adhesion; localised heating; ship repair; sustainable shipping
Vydáno
2025-08-26
Ročník
13
Číslo
9
Strany od–do
1–25
Počet stran
25
BIBTEX
@article{BUT198583,
author="Oleksiy {Melnyk} and Oleg {Onishchenko} and Sergiy {Kurdiuk} and Mykola {Bulgakov} and Oleksij {Fomin} and Václav {Píštěk} and Pavel {Kučera}",
title="Pulse-Driven Surface Hardening and Advanced Electrospark Alloying for Maritime Applications",
journal="Journal of Marine Science and Engineering",
year="2025",
volume="13",
number="9",
pages="1--25",
doi="10.3390/jmse13091624",
url="https://www.mdpi.com/2077-1312/13/9/1624"
}