4.7 Article

Cryogenic tensile properties and deformation behavior of a superhigh strength metastable beta titanium alloy Ti-15Mo-2Al

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.msea.2021.141344

关键词

beta-Ti alloy; Cryogenic temperature; Tensile properties; Deformation behavior

资金

  1. National Key Development Program of the Ministry of Science and Technology of China [2017YFB0305603]
  2. Xing Liao Talent Plan of Liaoning Province, China [XLYC1802080]
  3. Fundamental Research Fund for the Central Universities [02080022117003]

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The cryogenic tensile properties and deformation behavior of a metastable beta-Ti alloy Ti-15Mo-2Al were investigated, revealing superhigh ultimate tensile strength at 77 K and 20 K. The alloy shows high elongation-to-fracture at 77 K but drops sharply at 20 K, with enhanced work hardening rate and tensile strength at 77 K due to dynamic Hall-Patch effect. A serrated deformation occurs at 20 K, and cryogenic applications of the alloy are proposed to be feasible at temperatures not lower than 77 K.
Considering the great potential of extremely-low temperature applications, cryogenic tensile properties and deformation behavior of a metastable beta-Ti alloy Ti-15Mo-2Al were investigated. Superhigh ultimate tensile strength (UTS) of 1535 MPa at 77 K and 1725 MPa at 20 K are achieved. The elongation-to-fracture (EI) of the alloy is found to be maintained at a high level up to 22.0% at 77 K, but sharply drops down to 4.5% at 20 K. Because of the dynamic Hall-Patch effect induced by the extensive {332}< 113 > twins formed during deformation and the strong back-stress strengthening at twin boundaries, the work hardening rate and tensile strength are significantly enhanced at 77 K. In contrast to the stable deformation at 298 K and 77 K, a serrated deformation (i.e. discontinuous plastic flow) takes place at 20 K. The related cryogenic deformation mechanism and fracture behavior are illustrated from the dynamics of dislocation pileups and thermophysical activation aspect. It is proposed that cryogenic applications of the metastable beta-Ti alloy are practically feasible at least at temperatures not lower than 77 K.

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