PROSPECTS FOR DEVELOPMENT OF COMPOSITE STRUCTURES BASED ON CARBON-CARBON MATERIAL AND TITANIUM ALLOY

Authors

  • V.N. Antsiferov Perm National Research Polytechnic University
  • N.B. Astashina Perm State University of Medicine named after Academician E.A. Wagner
  • A.A. Smetkin Perm National Research Polytechnic University
  • M.N. Kachenyuk Perm National Research Polytechnic University
  • N.N. Strukov Perm National Research Polytechnic University

DOI:

Keywords:

carbon composites, titanium alloys, atmospheric plasma spraying, TIG-welding

Abstract

The paper presents the results of the research aimed at the formation and study of basic properties of composite structures made on the basis of carbon - carbon material and titanium alloy. At the present stage of development of fundamental and applied research there exist opportunities to create fundamentally new compositions with desired properties, performed on the basis of dissimilar materials. Studies have shown that the use of the technology of surfacing and spraying ensures the formation of high-grade titanium coating of the carbon material with adhesive strength of3.5-5.0 MPa and the ability to control the structure of the coating. The direct dependence of the bond strength of UKM - titanium post on the sintering temperature has been identified. At 1100 ºC the strength is minimal, with increasing temperature there is an increase in strength. The maximum bond strength of the design "titanium composite" connection was 9.2 MPa. The influence of cyclic loading on the bond strength UKM - titanium post has been identified. When the number of cycles is up to1000, a significant reduction of strength does not occur. With an increase in the number of cycles to 10 000 the strength is reduced to 7.3 MPa.

Supporting Agencies
Исследования выполнены при финансовой поддержке Министерства образования Пермского края и проекта РФФИ № 11-08-96030-р_урал_а.

Author Biographies

  • V.N. Antsiferov, Perm National Research Polytechnic University
    академик РАН, доктор технических наук, руководитель научного центра порошкового материаловедения, Пермский национальный исследовательский политехнический университет (ПНИПУ), 614013, г. Пермь, ул. Профессора Поздеева, 6; e-mail: director@pm.pstu.ac.ru
  • N.B. Astashina, Perm State University of Medicine named after Academician E.A. Wagner
    доктор медицинских наук, доцент кафедры ортопедической стоматологии, Пермский государственный медицинский университет им. академика Е.А. Вагнера (ПГМУ), 614000, г. Пермь, ул. Петропавловская, 26; e-mail: astashina.nb@gmail.com
  • A.A. Smetkin, Perm National Research Polytechnic University
    кандидат технических наук, доцент кафедры «Материалы, технологии и конструирование машин», ПНИПУ; e-mail: solid@pm.pstu.ac.ru
  • M.N. Kachenyuk, Perm National Research Polytechnic University
    кандидат технических наук, доцент кафедры «Материалы, технологии и конструирование машин», ПНИПУ; e-mail: maxx@pm.pstu.ac.ru
  • N.N. Strukov, Perm National Research Polytechnic University
    кандидат технических наук, доцент кафедры «Материалы, технологии и конструирование машин», ПНИПУ; e-mail: 059nikolai@rambler.ru

References

  1. Astasina N.B. Perspektivy kompleksnogo podhoda pri lecenii pacientov s defektami celustnyh kostej // Ural’skij medicinskij zurnal. - 2009. - No 5. - S. 5-8.
  2. Anciferov V.N. Ocenka osnovnyh harakteristik novoj kombinirovannoj implantacionnoj sistemy dla endoprotezirovania visocno-niznecelustnogo sustava / V.N. Anciferov, N.B. Astasina, G.I. Rogoznikov, M.N. Kacenuk, S.I. Rapekta // Fundamental’nye issledovania. - 2013. - No 2, c. 1. - C. 20-23.
  3. Kudinov V.V. Nanesenie pokrytij plazmoj / V.V. Kudinov, P.U. Peksev, V.E. Belasenko, O.P. Solonenko, V.A. Safiullin. - M.: Nauka, 1990. - 408 s.
  4. Strukov N.N., Smetkin A.A., Astashina N.B. Studies of interface interaction in Uglekon-titanium composite // Herald of Perm National Research Polytechnic University. Mechanical Engineering: Material Science. - 2014. - Vol. 16. - No 1. - P. 49-54.
  5. Karasyov M.V. Plasma-spraying bioactive coating of implants / Karasyov M.V., Klubnikin V.S. [et al.] // Gas-thermal spray coating. Book of Technical Guidelines / E. O. Paton EWI. - Kiev, 1990. - 176 p.
  6. Lyasnikov V.N., Kurdyumov A.A. Properties of plasma titanium coatings // Electronic Engineering Reviews. Iss.1. M.: Electronics CRI, 1983. - 34 p.
  7. Kalita V.I., Paramonov V.A. Structure and mechanics of 3-D titanium coatings with capillary pores // Metalworking physics and chemistry. - 2002. - No 6. - P. 37-41.
  8. Boulos M.I., Fauchais P., Pfender E. Thermal plasma: fundamental and applications. - Vol. 1. - Plenum Press, New York, 1994. - 452 p.

Published

2015-06-09

Issue

Section

Research: theory and experiment

How to Cite

Antsiferov, V. ., Astashina, N. ., Smetkin, A. ., Kachenyuk, M. ., & Strukov, N. . (2015). PROSPECTS FOR DEVELOPMENT OF COMPOSITE STRUCTURES BASED ON CARBON-CARBON MATERIAL AND TITANIUM ALLOY. Perm Federal Research Centre Journal, 1, 12-19. https://journal.permsc.ru/index.php/pscj/article/view/PSCJ2015n1p1