On Application of Carbon-Containing Electrode Materials in Technology of Electrospark Alloying: Part 1. Peculiarities of Coating Formation Using Electrospark Treatment of Titanium Alloy OT4-1

作者: A. E. Kudryashov , Zh. V. Eremeeva , E. A. Levashov , V. Yu. Lopatin , A. V. Sevost’yanova

DOI: 10.3103/S1068375518050083

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摘要: Electrospark treatment of OT4-1 titanium alloy was performed sequentially with a STIM-20N hard-alloy electrode (TiC–20% Ni) and carbon-containing material (graphite carbon-based composite materials). Kinetics the mass transfer studied. The cathode loss during first minute established. kinetics results were processed using methods mathematical statistics. erosion resistance applied materials determined. Phase composition relief coatings formed analyzed. It found that application increases content refractory phases in coatings. Increase time decreases roughness

参考文章(11)
A. I. Mikhailyuk, A. E. Gitlevich, Application of graphite in electrospark technologies Surface Engineering and Applied Electrochemistry. ,vol. 46, pp. 424- 430 ,(2010) , 10.3103/S1068375510050054
E. E. Feldshtein, M. A. Kardapolova, R. Gaida, B. Khorodyski, O. V. Kaval’chuk, Tribological properties of electrospark-deposited and further laser-hardened coatings Journal of Friction and Wear. ,vol. 34, pp. 137- 141 ,(2013) , 10.3103/S1068366613020049
A. I. Mikhailyuk, R. P. Zhitaru, Features of plastic deformation of electrospark coatings and ways for improvement of their strength characteristics at friction Surface Engineering and Applied Electrochemistry. ,vol. 44, pp. 383- 389 ,(2008) , 10.3103/S1068375508050086
E. A. Levashov, Yu. S. Pogozhev, A. E. Kudryashov, S. I. Rupasov, V. V. Levina, Tic-Ni-based composite materials dispersion-strengthened by nanoparticles for electrospark deposition Russian Journal of Non-ferrous Metals. ,vol. 49, pp. 397- 403 ,(2008) , 10.3103/S1067821208050167
E. V. Shelekhov, T. A. Sviridova, Programs for X-ray analysis of polycrystals Metal Science and Heat Treatment. ,vol. 42, pp. 309- 313 ,(2000) , 10.1007/BF02471306
A. E. Kudryashov, E. A. Levashov, L. B. Aksenov, V. M. Petrov, Use of electric spark alloying technology and promising nanostructured electrode materials for improving the life of punching equipment Metallurgist. ,vol. 54, pp. 514- 522 ,(2010) , 10.1007/S11015-010-9332-Z
V. V. Mikhailov, A. E. Gitlevich, A. D. Verkhoturov, A. I. Mikhailyuk, A. V. Belyakov, L. A. Konevtsov, Electrospark alloying of titanium and its alloys: The physical, technological, and practical aspects. Part I. The peculiarities of the mass transfer and the structural and phase transformations in the surface layers and their wear and heat resistance Surface Engineering and Applied Electrochemistry. ,vol. 49, pp. 373- 395 ,(2013) , 10.3103/S1068375513050074
L. V. Zueva, A. I. Gusev, Effect of nonstoichiometry and ordering on the period of the basis structure of cubic titanium carbide Physics of the Solid State. ,vol. 41, pp. 1032- 1038 ,(1999) , 10.1134/1.1130931
Tang Chang-bin, Liu Dao-xin, Wang Zhan, Gao Yang, Electro-spark alloying using graphite electrode on titanium alloy surface for biomedical applications Applied Surface Science. ,vol. 257, pp. 6364- 6371 ,(2011) , 10.1016/J.APSUSC.2011.01.120