4.7 Article

Phase precipitation behavior and tensile property of a Ti-Al-Sn-Zr-Mo-Nb-W-Si titanium alloy

Journal

RARE METALS
Volume 37, Issue 12, Pages 1064-1069

Publisher

NONFERROUS METALS SOC CHINA
DOI: 10.1007/s12598-015-0666-3

Keywords

High-temperature titanium alloy; Precipitation behavior; (2) phase; Silicide; Tensile properties

Funding

  1. National Natural Science Foundation of China [51201016]

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The characteristic of precipitation behavior of (2) phase and silicide, and the tensile properties at room temperature and 650 degrees C after heat treatments in a novel Ti-Al-Sn-Zr-Mo-Nb-W-Si titanium alloy (BTi-6431S) were investigated by microstructure analysis and mechanics performance testing. The results show that no second phase precipitates after solution treatment (980 degrees C/2h, air cooling (AC)). However, when the solution-treated specimens are aged at 600 degrees C (600 degrees C/2h, AC), (2) phase precipitates in the primary phase, and the size of (2) phase increases with the aging temperature increasing to 750 degrees C. Meanwhile, 50-100-nm S-2-type silicide particles precipitate along lamellar phase boundaries of transformed phase after aging at 750 degrees C. BTi-6431S alloy shows the best 650 degrees C ultimate tensile strength (UTS) and yield strength (YS) when treated in solution treatment. However, aging treatment results in a decline in 650 degrees C ultimate tensile strength. This may be attributed to the loss of solution strengthening due to the depletion of Al, Si and Zr of the matrix caused by the precipitation of Ti3Al and (TiZr)(6)Si-3. Silicide is a brittle phase; therefore, its precipitation causes a sharp decrease in the room-temperature ductility of BTi-6431S alloy.

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