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      Data on the effect of structure, elemental and phase composition gradient of nitride multilayer coatings on corrosion protection of different substrates in 3% NaCl and 5% NaOH solutions

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          Abstract

          The single-layer nitride coatings (TiN; ZrN; (Ti,Zr)N; (Ti,Al)N; (Ti,Zr,Al)N) were deposited by DC magnetron sputtering (MS), cathodic arc evaporation (CAE), pulsed magnetron sputtering (PMS), and combined methods (CAE + MS and CAE + PMS). During the single-layer coating deposition period, only one of the technological parameters was changed: evaporator arc current (I arc = 75–80 A), magnetron discharge power (N = 1.5–9.0 kW), bias voltage on the substrate (U bias = 40–200 V), partial pressure of the gas mixture of nitrogen and argon (P = 0.24–1.4 Pa), the nitrogen content in the gas mixture (N 2 = 12–100%) and the duration of the coating deposition (T c = 5–45 min). The single-layer nanostructured coatings with preset structure, elemental and phase composition were obtained after optimization of deposition technological parameters. The failure pattern and surface morphology, grain size and coating thickness of single-layer and multi-layer coatings were examined using the field emission electron microscope Ultra 55 with EDAX microanalyzer. To determine metal concentration in the coatings, a local chemical analysis was carried out by EDAX microanalyzer. The corrosion behavior of the single-layer two-, three- and multicomponent nitride coatings on the hard alloy, tool steel, and low carbon steel in the 5% NaOH and 3% NaCl was evaluated employing electrochemical techniques such as electrochemical impedance spectroscopy (EIS) and polarization curves. Multilayer nitride coatings were developed on the basis of single-layer coatings with a maximum protective effect in the 5% NaOH and 3% NaCl. The data of phase and elemental composition, and corrosion properties of single layer nitride coatings was presented in detail.

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          Corrosion, wear, and friction behavior of a number of multilayer two-, three- and multicomponent nitride coatings on different substrates, depending on the phase and elemental composition gradient

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            The influence of aluminum on the texture, microstructure, physical, mechanical and tribological properties of Ti1-xAlxN thin films

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              Physical and mechanical properties of the TixZr1−хN thin films

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                Author and article information

                Contributors
                Journal
                Data Brief
                Data Brief
                Data in Brief
                Elsevier
                2352-3409
                11 November 2019
                December 2019
                11 November 2019
                : 27
                : 104796
                Affiliations
                [a ]Perm National Research Polytechnic University, Perm, Russian Federation
                [b ]Perm State University, Perm, Russian Federation
                Author notes
                []Corresponding author. kameneva@ 123456pstu.ru
                Article
                S2352-3409(19)31151-5 104796
                10.1016/j.dib.2019.104796
                6920465
                c8b6f1f4-c7e0-4303-b0ca-54660e29ba2f
                © 2019 The Author(s)

                This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

                History
                : 7 June 2019
                : 25 October 2019
                : 4 November 2019
                Categories
                Materials Science

                single layer nitride coatings,phase and elemental composition,structure and composition gradient,corrosion properties,solutions of 5% naoh and 3% nacl

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