Журналы →  Tsvetnye Metally →  2017 →  №4 →  Назад

MATERIALS SCIENCE
Название Investigation of microstructure and properties of coatings on the steel 45, applied by TiC – Ni – Mo based electric discharge deposition
DOI 10.17580/tsm.2017.04.10
Автор Nikolenko S. V., Syuy N. A., Burkov A. A.
Информация об авторе

Institute of Materials Science of Khabarovsk Science Center of Far Eastern Branch of Russian Academy of Sciences, Khabarovsk, Russia:

S. V. Nikolenko, Leading Researcher
N. A. Syuy, Senior Engineer, e-mail: nicolaisyuy@gmail.com
A. A. Burkov, Researcher

Реферат

This paper shows the results of investigation of TiC – Ni – Mo based electric discharge coatings with additions of datolite concentrate from 1 to 2%, deposited on steel 45 with pulse duration from 20 to 80 microseconds, repetition rate 400 Hz and single charge energy from 0.144 to 0.72 J. Introduction of datolite concentrate to 1–2% increases the percentage of liquid-phase component of erosion products in comparison with alloy TiC – Ni – Mo, and increases the quantity of spherical particles with growth of pulse duration from 20 to 80 microseconds. We investigated the kinetics of mass transfer with electric discharge deposition of coatings. Introduction of 1% (wt.) additive increases the efficiency of coatings formation process, in comparison with alloy TiC – Ni – Mo. Increasing of pulse duration from 20 to 80 microseconds increases the mass transfer and efficiency of electric discharge deposition. The most efficient modes of electric discharge alloying and composition of formed alloyed alloys were defined: frequency 400 Hz, duration 80 microseconds for electrode TiC – Ni – Mo with 1% of datolite concentrate. Phase composition, surface roughness and microabrasive wear were investigated. Increasing of additive of datolite concentrate in electrode material significantly decreases the parameters of coating surface roughness. Wear resistance of coatings, obtained during the electric discharge alloying of steel 45 by electrode materials based on the alloy TiC – Ni – Mo with datolite concentrate additives from 1 to 2%, exceeds the wear resistance of coatings obtained during the deposition by alloy TiC – Ni – Mo. Our investigations defined that microhardness of coatings is higher than steel 45 microhardness by 2–3 times. Impedance spectroscopy investigated the anti-corrosion properties of obtained coatings in 3% solution of NaCl. We show the improvement of barrier properties of TiC – Ni – Mo coatings with datolite concentrate growth.

Ключевые слова Electric charge alloying, electrode materials, TiC – Ni – Mo alloy, datolite concentrate, impedance spectroscopy, wear resistance, surface roughness
Библиографический список

1. Ping Luo, Shijie Dong, Zhixiong Xie, Anzhuo Yangli, Wei Yang. The effects of coating parameters on the quality of TiB2 – TiC composite phase coating on the surface of Cu – Cr – Zr alloy electrode. Surface and Coatings Technology. 2014. Vol. 253. pp. 132–138.
2. Timothy Miller, Laurent Pirolli, Fei Deng, Chaoying Ni, Andrew V. Teplyakov. Structurally different interfaces between electric charge-deposited titanium carbonitride and tungsten carbide films on steel. Surface and Coatings Technology. 2014. Vol. 258. pp. 814–821.
3. Jingming Tang. Mechanical and tribological properties of the TiC – TiB2 composite coating deposited on 40Cr-steel by electro spark deposition. Applied Surface Science. 2016. Vol. 365. pp. 202–208.
4. Zhang Ruizhu, Li Jingrui, Yan Dakao, Zhao Yuanyuan. Mechanical properties of WC-8Co wear-resistant coating on pump impellers surface by electro-spark. Rare Metal Materials and Engineering. 2015. Vol. 44, No. 7. pp. 1587–1590.
5. Radek N., Sladek A., Broncek J., Bilska I., Szczotok A. electric charge alloying of carbon steel with WC – Co – Al2O3: deposition technique and coating properties. Advanced Materials Research. 2014. Vol. 874. pp. 101–106.
6. Nikolenko S. V., Verkhoturov A. D. New electrode materials for electric discharge alloying. Vladivostok : Dalnauka, 2005. 219 p.
7. Sheveleva, T. A., Verkhoturov A. D., Nikolenko S. V., Komarova G. P. Effect of datolite concentrate additives in electrode materials TiC – Ni – Mo on the properties of the surface layer of steels after electric discharge alloying. Elektronnaya obrabotka materialov. 1991. No. 1. pp. 26–30.
8. Nikolenko S. V., Suy N. A., Pugachevskii M. A., Metlitskaya L. P. Superhigh-speed extrusion of tungsten-free electrodes for electric charge alloying of steel 45. Russian Engineering Research. 2013. Vol. 33. pp. 258–264.
9. Kovalchenko M. S., Paustovskiy A. V., Kirilenko S. N. et al. Electric discharge alloying of steel by tungsten-less solid alloys. Poroshkovaya metallurgiya. 1984. No. 6. pp. 47–50.
10. Namitokov K. K. Electro-erosion phenomena. Moscow : Energiya, 1978. 456 p.
11. Kusano Y., Van Acker K., Hutchings I. M. Methods of data analysis for the micro-scale abrasion test on coated substrates. Surface and Coatings Technology. 2004. Vol. 183, No. 2/3. pp. 312–327.
12. Nikolenko S. V., Verkhoturov A. D., Syui N. A. et al. Influence of electric charge discharge parameters on roughness and microabrasive wear of steel 45 surface after ESA by TiC-based electrodes. Surface Engineering and Applied Electrochemistry. 2016. Vol. 52, No. 4. pp. 342–349.
13. Fei Cai, Chuanhai Jiang, Zhongquan Zhang, Enzo Muttini, Peng Fu, Yuantao Zhao. Fabrication and characterization of Ni – Zr composite coatings using electrodepositing technique. Journal of Alloys and Compounds. 2015. Vol. 635. pp. 73–81.
14. Gerasimova A. A., Radyuk A. G. The improvement of the surface quality of workpieces by coating. CIS Iron and Steel Review. 2014. No. 1. pp. 33–35.

Language of full-text русский
Полный текст статьи Получить
Назад