Print
2003 №06 (07) 2003 №06 (09)

The Paton Welding Journal 2003 #06
The Paton Welding Journal, 2003, #6, 29-33 pages

Diffusion bonding of titanium structures (Review)

L.S. Kireev1, V.V. Shurupov2, V.V. Peshkov2, A.A. Batishchev2

1E.O. Paton Electric Welding Institute of the NASU 11 Kazymyr Malevych Str., 03150, Kyiv, Ukraine.
2Voronezh State Technical University, Voronezh, Russia

Abstract
Analysis of modern concepts of the mechanism of formation of the welded joint, produced by diffusion bonding, was used demonstrate that this welding process is a promising technology to produce titanium structures with developed surfaces in terms of geometry, which permits making high-quality precision joints.
Keywords: diffusion bonding, thin-walled laminated structures, titanium, mechanical properties, microstructure

References

1. Kazakov, N.F. Method of joining ceramic and metal parts, for example, cutting plates to holders. USSR author’s cert. 112460. hit. Cl. В 23 К 1/00. Publ. 02.07.58.
2. Kazakov, N.F. (1976) Diffusion bonding of materials. Moscow: Mashinostroenie.
3. Belov, A.F. (1983) New metallurgical processes based on high-speed solidification and diffusion of metals. Izv. AN SSSR, Metally, 6, 11-20.
4. Charukhina, K.E., Golovanenko, S.A., Mastered, V.A. et al. (1970) Bimetallic joints. Moscow: Metallurgiya.
5. Bordakov, P.A., Grishin, I.S., Demichev, S.F. (1984) Experience of application of diffusion bonding in repair of gas turbine engine. In: Improvement of repair technologies for aircraft systems in civil aviation plants. Moscow: Aviaremont.
6. Bordakov, P.A., Samorodov, D.V., Grishin, I.S. (1979) Selection of welding conditions of El 961 steel shaft with gas turbine engine rotor of VZhL 12U alloy. Avtomatich. Svarka, 7, 54-56.
7. (1999) Vacuum diffusion bonding of bimetallic attachments and boring tool billets. In: Transact, of VNTK. Samara: SGAU.
8. Karakozov, E.S., Vigdorchik, S.A., Petrosyan, V.A et al. (1975) Validation of a variant of honeycomb sandwich structure fabrication by the pressure welding. Svarochn. Proizvodstvo, 12, 21-25.
9. Gelman, A.A., Kolodkin, N.I., Pavlov, V.M. et al. (1978) Diffusion bonding of T-joints of VT6s titanium alloy. Ibid., 5, 15-17.
10. Peshkov, V.V., Kudashov, O.G., Grigorievsky, V.I. et al. (1980) Peculiarities of titanium laminated structures production by diffusion bonding. Ibid., 5, 17-19.
11. Malyushkin, B.A., Kotelnikov, A.A., Maidanov, A.P. (1980) Diffusion bonding of finned panels or titanium alloys. Ibid., 7, 43-45.
12. Peshkov, V.V., Kudashov, A.O. (1982) Influence of initial microstructure on joint formation in diffusion welding of OT4-1 titanium alloy honeycomb sandwich structures. Ibid., 6, 27-31.
13. Peshkov, V.V., Gusev, S.I. (1984) On selection of process parameters of diffusion bonding of titanium alloy Honeycomb sandwich structures. Ibid., 10, 12-14.
14. Owczarski, W.A., Paulonis, D.F. (1981) Application of diffusion welding in the USA. Welding J., 2, 20-33.
15. Vaccari, J.A. (1983) Form-bonding titanium in one-shot. American Machinist, 10, 91-94.
16. Sheldon, E.F. (1979) Diffusion bonding: aerospace application. In: Diffus. Bonding Prod. Process. Abington.
17. Salikov, V.A., Shushpanov, M.N., Kolomensky, A.B. et al. (2001). Welding in aircraft construction. Voronezh: VGTU.
18. Bondar, A.V., Peshkov, V.V., Kireev, L.S. et al. (1998) Diffusion bonding of titanium and its alloys. Voronezh:
19. Hertel, G. (1965) Thin-walled structures. Moscow: Mashinostroenie.
20. Du Mond, T.C. (1973) Titanium arrives: Now in short sup¬ply. Iron Age, 212, 49-50.
21. Karakozov E.S., Orlova, L.M., Peshkov, V.V. et al. (1977) Diffusion bonding of titanium. Moscow: Metallurgiya.
22. Gelman, A.A., Kolodkin, N.I., Kotelnikov, A.A. et al. (1983) Optimal parameters of diffusion bonding of titanium alloys with different phase composition. Avtomatich. Svarka, 4, 53-57.
23. Grin, E.D. Diffusion bonding method. Pat. 3497945 USA. Int. Cl. В 23 К 31/02. Publ. 03.03.70.
24. (1967) Diffusion bonding of formable structural panels by composite rolling. Industrial Heating, 8, 1432-1434.
25. (1975) New fabrication method stimulate titanium use. Iron Age, 26, 28-31.
26. Weisert, E.D., Staiher, G.W. (1977) Fabrication of titanium parts with SPF/DB process. Metal Progress, 3, 33-37.
27. (1983) Testing in USA of structures of future airplane (Review). Zarub. Voen. Obozrenie, 2, 90-91.
28. Peshkov, V.V., Rodionov, V.N., Podoprikhin, M.N. et al. (1981) On methods to decrease distortion of thin-wal led titanium structures in diffusion bonding. Avtomatich, Svarka, 9, 24-27.
29. Peshkov, V.V., Rodionov, V.N. (1984) Structure as a factor of control of diffusion bonding process of titanium thin-walled laminated structures. Svarochn. Proizvodstvo, 4, 9-11.
30. Krasulin, Yu.L. (1971) Interaction of metal with a semiconductor in the solid phase. Moscow: Nauka.
31. Karakozov, E.S. (1976) Solid phase bonding of metals. Moscow: Metallurgiya.
32. Gelman, A.S. (1970) Principles of pressure welding. Moscow: Mashinostroenie.
33. Karakozov, E.S. (1986) Pressure welding of metals. Moscow: Mashinostroenie.
34. Kolachev, B.A., Livanov, V.A., Bukhanova, A.A. (1974) Mechanical properties of titanium and its alloys. Moscow: Metallurgiya.
35. Glazunov, S.G., Moiseev, V.N. (1974) Structural titanium alloys. Moscow: Metallurgiya.
36. Solonina, O.P., Glazunov, S.G. (1978) Heat-resistant titanium alloys. Moscow: Metallurgiya.
37. Kaganovich, I.N., Zvereva, E.F., Beloborodova, A.I. (1971) Influence of heating on structure and mechanical properties of titanium alloys. Tsvet. Metally, 11, 61-64.
38. Shakhanova, G.V., Brun, M.Ya. (1982) Structure of titanium alloys and methods of its control. Metallovedenie i Term. Obrab. Metallov, 7, 19-22.
39. Kolachev, B.A., Malkov, L.V. (1983) Physical principles of fracture of titanium. Moscow: Metallurgiya.
40. Moroz, L.S., Khesin, Yu.D., Belova, O.S. (1963) Structure and mechanical properties of low-alloyed titanium alloys. Metallovedenie i Term. Obrab. Metallov, 2, 17-23.
41. Peshkov V.V., Rodionov, V.N., Vorontsov, E.S. (1977) Creep of OT4 titanium alloy. Izv. AN SSSR, Metally, 2, 188-192.
42. Peshkov V.V., Rodionov, V.N., Podoprikhin, M.N. (1980) Creep of OT4 titanium alloy with coarsegrained structure. Izv. Vuzov, Tsvet. Metallurgiya, 5, 95-977.
43. Peshkov, V.V., Rodionov, V.N., Grigorievsky, V.I. (1977) Joint quality control in diffusion welding of titanium alloys due to control of the initial structure. Svarochn. Proizvod¬stvo, 10, 18-20.
44. Peshkov, V.V., Rodionov, V.N. (1984) Methods to increase the stability level of mechanical characteristics of OT4 titanium alloy welded joints, produced by diffusion bonding. Avtomatich. Svarka, 11, 39-43.
45. Musin, R.A., Antsiferov, V.N., Kvasnitsky, V.F. (1979) Diffusion bonding of heat-resistant alloys. Moscow: Metallurgiya.
46. Baj, A.S., Lajner, D.I., Slyusaryova, E.N. et al. (1970) Oxidation of titanium and its alloys. Moscow: Metallurgiya.
47. Peshkov, V.V., Vorontsov, E.S. (1973) Investigation of the process of oxide film dissolution in titanium. Izv. AN SSSR, Metally, 4, 99-102.
48. Peshkov, V.V., Milyutin, V.N., Podoprikhin, M.N. (1984) On interaction between titanium and vacuum space residual gases in the conditions of diffusion bonding. Svarochn. Proizvodstvo, 2, 14-16.
49. Peshkov, V.V., Milyutin, V.N., Rodionov, V.N. (1985) Influence of diffusion bonding thermal cycle on the condition of the surface and surface layers of OT4 titanium alloy. Avtomatich. Svarka, 1, 15-18.
50. Peshkov, V.V., Milyutin, V.N., Rodionov, V.N. et al. (1984) Kinetics of joint formation in diffusion bonding of VT5 titanium alloy. Ibid., 7, 27-31.

Suggested Citation

L.S. Kireev, V.V. Shurupov, V.V. Peshkov, A.A. Batishchev (2003) Diffusion bonding of titanium structures (Review). The Paton Welding J., 06, 29-33.