Formation of Metal–Polymer Composite on Titanium Alloy Surfaces

Article Preview

Abstract:

The work surveys the possible formation of a polymer composite layer on titanium alloys using ultrasonic treatment. The results of the formed composite layer research obtained by measuring a friction rate and analyzing wear slots are provided, properties of surface layers and special features of their wearing process have been investigated.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

453-458

Citation:

Online since:

October 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Ilyin А.А., Karpov V.N., Mamontov А.М., Kollerov М. Yu. Application of titanium and titanium-based materials in medicine / Ti – 2006 in CIS, 2006. pp.324-327.

Google Scholar

[2] Ilyin А.А., Skvortzova S.V., Mamontov А.М. and colleagues. Application of titanium and its alloys in medicine / Advanced technologies of light and special alloys. М.: PHIZMATLIT, 2006. P. 399-408.

Google Scholar

[3] Gimaev I.Е., Gvozdev А.А. Increasing service life of friction systems during the repairing operations and manufacture of equipment using metal-polymer composites / Collection of studies GNU GOSNITI Т. 105. -М.: GOSNITI , 2010. P. 141-144.

Google Scholar

[4] Gvozdev А.А., Chernov Yu.I., Gerasimov А.I. Increasing service life of friction systems during the repairing operations and manufacture of agricultural machinery using metal-polymer composites / Collection of studies Kuban State Agrarian University, Series: AGROENGINEER. – Krasnodar: KubSAU, 2008, No. 1, P. 90-91.

Google Scholar

[5] Istomin N.P., Semenov А.P. Antifriction properties of polytetrafluoroethylene-based composite materials. – М.: Nauka (Science), 1981. – 148p.

Google Scholar

[6] Polymers in friction units of mechanisms and appliances: Handbook / Chichinadze А.V. – 2nd Ed. Rev. and Inl. – М.: Mashinostroenie ( Machine Engineering), 1988. – 328p. Ill.

Google Scholar

[7] Chapman E.M. Properties and applications of reinforced Teflon. – Mach. Desing, 1958, vol. 30, pp.148-154.

Google Scholar

[8] Jrurin A.S. Use of TEE and its derivatives in antifriction bearing components. – ModPlast., 1965, vol. 43, №1, pp.178-244.

Google Scholar

[9] Lappo V.G. Modern problems in toxicology of polymer materials for medicine / Synthetic polymer for medical applications. – Tashkent, 1984. – P. 25- 40.

Google Scholar

[10] Plate N.А. Polymers for medicine / Nayka v SSSR (Science in USSR), 1986, № 1, P. 2-9.

Google Scholar

[11] Polymers of medical applications: Trans. From Jap. / Rev. by S. Manabu. - М.: Medicine, 1981. – 248 p.

Google Scholar

[12] Klimenov V.A., Kovalevskaya Zn.G., Borozna V. Yu., Sun Zeming, Zhu Qifang. Nanocristallization surface treatment of titanium alloys / RARE METALS Vol. 28, Spec. Issue, Oct 2009, pp.195-198.

Google Scholar

[13] Klimenov V.A., Borozna V. Yu., Zaitsev K.V. Influence of ultrasonic superficial processing on properties of titanium alloys / 18th International Metallurgical and Materials Conference, Hradec nad Moravici, Czech Republic, 2009. Р. 243-248.

Google Scholar

[14] A.I. Afonasov, A.A. Lasukov. Elementary chip formation in metal cutting / Russian Engineering Research, 2014, Vol. 34, No. 3, pp.152-155.

DOI: 10.3103/s1068798x14030034

Google Scholar

[15] Ignatieva L.N., Buznik V.М. UR-spectroscopic investigation of polytetrafluoroethylene and its modified forms / (Rossiyskiy Khimicheskiy Zhurnal (Russian Chemical Journal) . 2008. Vol. 52. №3. P. 139-146.

Google Scholar

[16] Panin А.V. Peculiarities of plastic deformation and destruction of US-treated technical titanium and carbon steels / Fizika metallov i Metallovedenie (Physics of Metals and Metallurgy). 2004, Vol. 98. № 1, P. 109-118.

Google Scholar

[17] Panin А.V., Panin V.Е., Pochivalov Yu.I. and colleges. Special features of localizing deformation and mechanical behavior of Titanium VТ1-0 in various structural conditions / Phys. Mezomech. – 2002. – Vol. 5. – № 4. – P. 73-84.

Google Scholar

[18] Ovcherenko V.Е., Ivanov Yu.F. Tribological properties of nanopatterned surfaces of titanium-carbide metal-ceramic alloy/ Tomsk Polytechnic University News-Bulletin. 2008. Vol. 313. №2. P. 114-118.

Google Scholar

[19] Markov D.P., Kelly D. Types of adhesion-initiated catastrophic wear / Journal of Friction and Wear c/c of Trenie I Iznos. – 2002 (23), №5. P. 483-493.

Google Scholar