[1]
Beliy A.V., Karpenko G.D., Mishkin N.K. Struktura i metodi formirovania iznosostoikih poverhnostnih sloev. – M.: Mashinostroenie, 1991. – p.208.
Google Scholar
[2]
M. Bayati, Molei R. Zhanhorban K. poverhnostnoe legirovanie uglerodistih stalei iz elektricheskoi plazmi / Metallovedenie I termicheskaya obrabotka metallov, 2011, № 2 (668), pp.42-45.
Google Scholar
[3]
S.F. Zabelin. Ob aktivatsi I kineticheskoi teorii protsessov diffuzionnogo nasishenia metallov pri himiko-termicheskoi obrabotke / Materialovedenie, 2004, № 7, pp.17-22.
Google Scholar
[4]
Saraev Y.N. Barns, Shtertser A.A. Orishin A.M., Ilyushenko A.F., Skakov M.K. Kompleksni podhod k povisheniy ekspluatatsionnoi nadiojnosti detalei I izdelii / Tehnologia mashinostroenia, 2011, № 8, pp.39-42.
Google Scholar
[5]
Suminov Y,V., Belkin, P.N. etc. Mir materialov I tehnologii. V 2-h tomah, Tom 1, M. izd. Tnosfera, 2011, - 464 p.
Google Scholar
[6]
Gupta P., Tenhundfeld G., Daigle E.O., Ryabkov D. Electrolytic plasma technology: Science and engineering - an overview / / Surf. & Coat. Technol. In 2007. V. 25. P. 8746.
DOI: 10.1016/j.surfcoat.2006.11.023
Google Scholar
[7]
LA Poznyak, Tishaev S.I., YM Skrynchenko. Instumentalnie stali: Spravochnik. Moscow: Metallurgiya, 1977, 167 p.
Google Scholar
[8]
LS Kremnev, Vinogradova, L.A., A.K. Onegin, Sapronov I.J. Osobennosti sostava, strukturi I svoistv bistrorezhushih stalei dlia metallorejushego instumenta s ionno-plazmennimi pokriniami na osnove nitrida titana / Metallovedenie I termicheskaya obrabotka metallov, 2012, № 1 (679), pp.4-9.
Google Scholar