Corrosion and erosion resistance of copper and molybdenum composite materials condensed from the vapour phase

Author:

Grechanyuk I.M., ,Grechanyuk V.G.,

Publisher

International Association Welding

Reference9 articles.

1. 1. Grechanyuk, V.G. (2013) Physical-chemical principles of formation of copper-based composite materials condensed from vapor phase: Syn. of Thesis for Dr. Chem. Sci. Degree. Kyiv, 40 [in Ukrainian].

2. 2. Grechanyuk, N.I., Minakova, R.V., Vasilega, O.P. et al. (2010) State-of-the art and prospects of application of high-velocity electron beam evaporation technology and subsequent vacuum condensation of metals and nonmetals for producing of electric contact and electrodes. In: Collect. of IPS NASU: Electric contacts and electrodes. Kiev, 54−57 [in Russian].

3. 3. Grechanyuk, N.I., Grechanyuk, V.G. (2018) Dispersed and laminar volumetric nanocrystal materials on base of copper and molybdenum. Structure, properties, technology, application. Information 1. Structure and phase composition. Sovrem. Elektrometall., 1, 42−53 [in Russian].

4. 4. Grechanyuk, N.I., Grechanyuk, V.G. (2019) Mechanical properties of dispersed and laminar composite materials on copper and molybdenum base. Ibid., 2, 43−49 [in Russian].

5. 5. (1980) Unified procedures of laboratory testing of effectiveness of corrosion inhibitors in aqueous systems. Riga, Inst. of Inorganic Chemistry [in Russian].

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