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Arc-sprayed Fe-based coatings from coredwires for wear and corrosion protection in power engineering

Yury, Korobov; Filippov, Michael; Makarov, Aleksey; Malygina, Irina; Soboleva, Natalia; Fantozzi, Davide; Andrea, Milanti; Koivuluoto, Heli; Vuoristo, Petri (2018-02-01)

 
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Yury, Korobov
Filippov, Michael
Makarov, Aleksey
Malygina, Irina
Soboleva, Natalia
Fantozzi, Davide
Andrea, Milanti
Koivuluoto, Heli
Vuoristo, Petri
01.02.2018

Coatings
71
This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited.
doi:10.3390/coatings8020071
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https://urn.fi/URN:NBN:fi:tty-201907151958

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Peer reviewed
Tiivistelmä
High wear and corrosion of parts lead to an increase in operating costs at thermal power plants. The present paper shows a possible solution to this problem through the arc spraying of protective coatings. Cored wires of the base alloying system Fe-Cr-C were used as a feedstock. Rise of wear- and heat-resistance of the coatings was achieved by additional alloying with Al, B, Ti, and Y. The wear and heat resistance of the coatings were tested via a two-body wear test accompanied by microhardness measurement and the gravimetric method, respectively. A high-temperature corrosion test was performed at 550 °C under KCl salt deposition. The porosity and adhesion strengths of the coatings were also evaluated. The microstructure was investigated with a scanning electron microscope (SEM) unit equipped with an energy dispersive X-ray (EDX) microanalyzer, and the phase composition was assessed by X-ray diffractometry. The test results showed the positive influence of additional alloying with Y on the coating properties. A comparison with commercial boiler materials showed that the coatings have the same level of heat resistance as austenite steels and are an order of magnitude higher than that of pearlite and martensite-ferrite steels. The coatings can be applied to wear- and heat-resistant applications at 20-700 °C.
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