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- Title
An experimental investigation of phase transformation superplastic diffusion bonding of titanium alloy to stainless steel.
- Authors
Sheng, G. M.; Huang, J. W.; Qin, B.; Zhou, B.; Qiu, S. Y.; Li, C.
- Abstract
The solid-state direct diffusion bonding of a near α-phase titanium alloy to an austenitic stainless steel by means of the phase transformation superplasticity (PTSP) caused by the cycles of heating and cooling has been carried out. The test results showed that, under the conditions of T max = 890°C, T min = 800°C, cyclic number of heating and cooling N = 10 cycles, specific pressure P = 5 MPa, heating rate V h = 30°C/s and cooling rate V c = 10°C/s, the ultimate tensile strength of the joint reached its maximum value (307 MPa), and the bonding time was only 120 s. In the phase transformation superplastic state, the deformation of titanium alloy has a character of ratcheting effect and it accumulates with the cycles of heating and cooling. The observations of tensile fracture interface showed that both the brittle intermetallic compound (FeTi) and the solid solution based on β-Ti were formed on the interface, and the more in quantity and the smaller in size the solid solutions are, the higher the ultimate tensile strength is.
- Subjects
DIFFUSION; TITANIUM alloys; COBALT-titanium-carbon alloys; STAINLESS steel; PHASE transitions; INTERMETALLIC compounds; SOLID solutions
- Publication
Journal of Materials Science, 2005, Vol 40, Issue 24, p6385
- ISSN
0022-2461
- Publication type
Article
- DOI
10.1007/s10853-005-1629-0