Kompetentnost' 7/138/2016

ISSN 1993-8780

RESEARCH 39

SWOT-analysis of the Processes of Obtaining

Nickel Coatings

Assoc. Prof. Dr. V.D. Skopintsev, Senior Research Worker, Evdokimov Moscow State Medical and Dental University, Moscow, Russia scopintsev@yandex.ru

Dr. Kh.A. Nevmyatullina, Associate Professor, Dmitry Mendeleev University of Chemical Technology of Russia, Moscow, Russia, knevm@mail.ru

Assoc. Prof. Dr. Т.F. Burukhina, Associate Professor, Dmitry Mendeleev University of Chemical Technology of Russia, Moscow, Russia, burukhina@bk.ru

Dr. S.Yu. Kladiti, Ingeneer, Dmitry Mendeleev University of Chemical Technology of Russia, Moscow, Russia, kladiti@inbox.ru

Dr. V.V. Bondar’, Leading Research Worker, VINITI of RAN, Moscow, Russia, kupervog@mail.ru

key words

production technologies, SWOT-analysis, nickel plating, environmental issues, industry, modernization

References

The processes of chemical and electrochemical methods of obtaining coatings of nickel-phosphorus alloy are compared. The strengths and weaknesses of each process are identified on the basis of SWOT-analysis. Their comparative evaluation is given. It is concluded about the priority directions in the nickel plating technology development.

1. Gal’vanotekhnika / Pod red. A.M. Ginberga [Galvanotechnics], Metallurgiya, 1987, 736 P.
2. Dakhov V.N., Tsupak T.E., Kopteva N.I., Kryshchenko K.I., Gamburg Yu.D. Elektroosazhdenie nikelya i splava nikel’-fosfor
iz razbavlennykh atsetatnykh elektrolitov [Electrodeposition of nickel and nickel-phosphorus alloy of dilute electrolytes acetate],

Gal’vanotekhnika i obrabotka poverkhnosti, 1993, v. II, no. 3, pp.30–33.

3. Pavlova V.I., Drovosekov A.B., Tsupak T.E. Elektroosazhdenie splava nikel’-fosfor iz razbavlennykh atsetatno-khloridnykh elektrolitov [Electrodeposition of nickel-phosphorus alloy of dilute acetate-chloride electrolyte], Gal’vanotekhnika i obrabotka poverkhnosti. 1997, v. V, no. 4. pp. 33–40.
4. Nogin M.I., Karelin A.V., Skopintsev V.D. Sovershenstvovanie protsessa khimicheskogo nikelirovaniya [Improvement of chemical nickel plating process], Trudy TsNIITMASh, 1991, pp.121–130.
5. Morgunov A.V., Skopintsev V.D. Osazhdenie khimicheskikh nikel’-med’-fosfornykh pokrytiy s ponizhennym soderzhaniem medi [Precipitation chemical copper-nickel-phosphorus coating with a low content of copper], Gal’vanotekhnika i obrabotka poverkhnosti, 2008, v. XVI, no. 3, pp. 30–34.
6. Skopintsev V.D., Arkhipov E.A., Smirnov K.N. Universal’nyy rastvor khimicheskogo nikelirovaniya [Universal chemical nickel plating solution], Mir gal’vaniki, 2015, no. 1(29), pp. 26–30.
7. Novikov V.A., Grishin A.A. SWOT-analiz funktsionirovaniya protsessa [SWOT-analysis of the Process Functioning], Kompetentnost’, 2012, no. 4. pp. 26–30.
8. Vinokurov E.G, Nevmyatullina Kh.A., Burukhina T.F, Grafushin R.V., Bondar’ V.V. SWOT-analiz tekhnologii khromirovaniya
[SWOT-analysis of Сhrome Plating], Kompetentnost’, 2016, no. 4, pp. 27–32.
9. GOST R ISO 9001–2015 Quality management systems. Requirements.
10. Babyak S.I., Evgrafov V.A., Morgunov A.V., Skopintsev V.D. Fiziko-mekhanicheskie i korrozionnye svoystva khimicheskikh nikel’-med’- fosfornykh pokrytiy [Physical and mechanical and corrosion properties of chemical nickel-copper-phosphorus coating], Gal’vanotekhnika

i obrabotka poverkhnosti, 2009, v. XVII, no. 1, pp. 31–37.

11. Skopintsev V.D., Firsova T.D., Vinokurov E.G. Metallizirovannye uglerodnye i bazal’tovye tkani dlya ekranirovaniya elektromagnitnogo izlucheniya [Metallized carbon and basalt fabric for shielding of electromagnetic radiation], Zhurnal prikladnoy khimii, 2015, v. 88, vyp. 12, pp. 28–32.
12. Vinokurov E.G., Skopintsev V.D. Sravnitel’naya otsenka protsessov khimicheskogo i gal’vanicheskogo nikelirovaniya [Comparative evaluation of the processes of chemical and galvanic nickel plating], Sovremennye metody v teoreticheskoy i eksperimental’noy elektrokhimii. VII Mezhdunarodnaya nauchnaya konferentsiya, Sb. tez. dokladov, 2015, 24 P.
13. Karelin A.V., Kotov I.O., Klinskiy G.D., Skopintsev V.D. Korrozionnye i fiziko-mekhanicheskie svoystva khimicheskikh kompozitsionnykh pokrytiy [Corrosive and physic-mechanical properties of the chemical composition of coatings], Gal’vanotekhnika i obrabotka poverkhnosti,
1998, v. VI, no. 3, pp. 86–91.
14. Klinskiy G.D., Kotov I.O., Balitskiy V.N., Skopintsev V.D. Vserossiyskaya konferentsiya Progressivnaya tekhnologiya i voprosy ekologii v gal’vanotekhnike i proizvodstve pechatnykh plat [Advanced technology and environmental issues in electroplating and PCB manufacturing, RU Conference], Penza, 2000, pp. 32–34.
15. Vinokurov E.G., Morgunov A.V., Zhigunov F.N., Skopintsev V.D. Osazhdenie khimicheskikh pokrytiy nikel’-fosfor i nikel’-fosfor-med’ iz glitsinatnykh rastvorov [Deposition of chemical plating nickel-phosphorus and nickel-phosphorus-copper solutions from glycinate], Gal’vanotekhnika i obrabotka poverkhnosti, 2015, v. XXIII, no. 3, pp.40–46.
16. Skopintsev V.D., Firsova T.D. Novyy nizkotemperaturnyy elektrolit khimicheskogo nikelirovaniya [New low temperature chemical nickel plating electrolyte], Gal’vanotekhnika, obrabotka poverkhnosti i ekologiya, 2002, 108 P.
17. Vinokurov E.G., Skopintsev V.D. Chemical nickel plating as a promising replacement electroplating processes,
Resurso- i energosberegayushchie tekhnologii v khimicheskoy i neftekhimicheskoy promyshlennosti. VII Mezhdunarodnaya konferentsiya
Rossiyskogo khimicheskogo obshchestva imeni D.I. Mendeleeva. Tezisy dokladov, 2015, pp. 97–100.
18. Vinokurov E.G., Burukhina T.F., Kolesnikov V.A., Fadina S.V. The Concentration criterion classification of resource-saving compositions of solutions for metal coverings electrodeposition, Teoreticheskie osnovy khimicheskoy tekhnologii, 2012, v. 46, no. 5, pp. 486–491.