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Microstructure and properties of AlCr and AlCrFe coatings deposited by magnetron sputtering
In this work, AlCr and AlCrFe coatings were deposited via magnetron sputtering on technical substrates of carbon steel C45 and titanium grade 2. The coatings feature an amorphous structure, a thickness of 3–4 μm, and are uniform in terms of thickness and chemical composition. No major defects were visible at the interface; however, there is no diffusion at the interface, which indicates the adhesive type of bonding and results in relatively low adhesion. The coatings are characterized by a hardness of about 8–10 GPa and a Young modulus above 150 GPa. Both values are slightly higher for steel substrate. The coatings assure good corrosion resistance for steel substrate while underperforming those of Ti grade 2.
Microstructure and properties of AlCr and AlCrFe coatings deposited by magnetron sputtering
In this work, AlCr and AlCrFe coatings were deposited via magnetron sputtering on technical substrates of carbon steel C45 and titanium grade 2. The coatings feature an amorphous structure, a thickness of 3–4 μm, and are uniform in terms of thickness and chemical composition. No major defects were visible at the interface; however, there is no diffusion at the interface, which indicates the adhesive type of bonding and results in relatively low adhesion. The coatings are characterized by a hardness of about 8–10 GPa and a Young modulus above 150 GPa. Both values are slightly higher for steel substrate. The coatings assure good corrosion resistance for steel substrate while underperforming those of Ti grade 2.
Microstructure and properties of AlCr and AlCrFe coatings deposited by magnetron sputtering
Archiv.Civ.Mech.Eng
Ura-Bińczyk, Ewa (author) / Kulikowski, Krzysztof (author) / Chromiński, Witold (author) / Smolik, Jerzy (author) / Lewandowska, Małgorzata (author)
2023-05-09
Article (Journal)
Electronic Resource
English
Microstructure and properties of AlCr and AlCrFe coatings deposited by magnetron sputtering
Springer Verlag | 2023
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