[[abstract]]Cr–N coatings were deposited in Ar/N2 plasma at various nitrogen flow rate ratios by using the reactive magnetron sputtering process. The solid solution Cr(N), chromium nitride Cr2N and CrN were found to form at nitrogen gas flow rate ratios of 8%, 32% and 48%, respectively. The hydrophobic property of these three phases was studied by water contact angle (WCA) measurement. The Cr2N phase with higher WCA was further selected to study the high temperature oxidation and the hydrophobic properties. The Cr2N coatings were annealed in air for 2 h between 300 and 900 °C at 100 °C interval, respectively. The experimental results show that WCA of the as-deposited Cr2N is about 106° and there is no obvious change when annealed below and ...
Chromium nitride thin films were deposited by unbalanced magnetron (UBM) sputtering on AISI 304 stai...
The most widely used surface treatment to protect engineering components is the deposition of hard c...
Chromium nitride (CrN) and multilayers Cr/CrN coatings were deposited by low cathodic arc technology...
International audienceChromium nitrides were deposited by RF reactive magnetron sputtering from a Cr...
© 2018 Elsevier B.V. Chromium nitride (CrN) coatings were deposited by magnetron sputtering onto Si(...
Good oxidation and corrosion resistance are required for cutting tools and other industrial componen...
[[abstract]]Cr–N films with various compositions and structures are deposited by reactive sputtering...
Cr2N is commonly found as a minority phase or inclusion in stainless steel, CrN-based hard coatings,...
Thin (40 nm and 160 nm) CrN coatings were deposited on steel by reactive magnetron sputtering deposi...
Thin (40 nm and 160 nm) CrN coatings were deposited on steel by reactive magnetron sputtering deposi...
Thin CrNx coatings are often used as protective coatings for steel. In these applications, coated pa...
[[abstract]]Various PVD (physical vapor deposition) hard coatings including nitrides and metal-doped...
Cr and CrN coatings were prepared by d.c. magnetron sputtering in a pure Ar and a N2-Ar atmospheres,...
Nitride based hard coatings are widely used for mechanical applications. Among these coatings, chrom...
Chromium nitride coatings prepared by physical vapour deposition (PVD) show high hardness, high stre...
Chromium nitride thin films were deposited by unbalanced magnetron (UBM) sputtering on AISI 304 stai...
The most widely used surface treatment to protect engineering components is the deposition of hard c...
Chromium nitride (CrN) and multilayers Cr/CrN coatings were deposited by low cathodic arc technology...
International audienceChromium nitrides were deposited by RF reactive magnetron sputtering from a Cr...
© 2018 Elsevier B.V. Chromium nitride (CrN) coatings were deposited by magnetron sputtering onto Si(...
Good oxidation and corrosion resistance are required for cutting tools and other industrial componen...
[[abstract]]Cr–N films with various compositions and structures are deposited by reactive sputtering...
Cr2N is commonly found as a minority phase or inclusion in stainless steel, CrN-based hard coatings,...
Thin (40 nm and 160 nm) CrN coatings were deposited on steel by reactive magnetron sputtering deposi...
Thin (40 nm and 160 nm) CrN coatings were deposited on steel by reactive magnetron sputtering deposi...
Thin CrNx coatings are often used as protective coatings for steel. In these applications, coated pa...
[[abstract]]Various PVD (physical vapor deposition) hard coatings including nitrides and metal-doped...
Cr and CrN coatings were prepared by d.c. magnetron sputtering in a pure Ar and a N2-Ar atmospheres,...
Nitride based hard coatings are widely used for mechanical applications. Among these coatings, chrom...
Chromium nitride coatings prepared by physical vapour deposition (PVD) show high hardness, high stre...
Chromium nitride thin films were deposited by unbalanced magnetron (UBM) sputtering on AISI 304 stai...
The most widely used surface treatment to protect engineering components is the deposition of hard c...
Chromium nitride (CrN) and multilayers Cr/CrN coatings were deposited by low cathodic arc technology...