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作 者:H.R.Zhang H.Z.Niu M.C.Zang Y.H.Zhang S.Liu D.L.Zhang
机构地区:[1]School of Materials Science and Engineering,Northeastern University,Shenyang 110819,China [2]State Key Laboratory of Rolling and Automation,Northeastern University,Shenyang 110819,China
出 处:《Journal of Materials Science & Technology》2022年第34期96-107,共12页材料科学技术(英文版)
基 金:financially supported by the“Xing Liao Talent Plan”of Liaoning Province,China(No.XLYC1802080);the Fundamental Research Fund for the Central Universities(No.02080022117003)。
摘 要:An extra-low interstitial near alpha alloy Ti-3Al-2Zr-2Mo(wt%) was fabricated by hydrogenation and thermomechanical consolidation(TMC) of the coarse and spherical pre-alloyed powder with particle sizes of 60 to 270 μm. The coarse powder is a byproduct of pre-alloyed powder produced for selective laser and electron beam additive manufacturing. The TMC process involves powder compaction, fast sintering,in-situ dehydrogenation and an immediate hot extrusion to form a fully dense and fine-grained martensitic microstructure. Further dehydrogenation in vaccum at 700 °C converted the martensitic microstructure into an interwoven α/β microstructure which exhibited an improved yield strength, apparent necking and premature cracking at grain boundary α(α_(GB)) ribbons. A further annealing of 880 ℃/1 h/AC led to the formation of a fine-grained α/β_(t)composite structure, which achieved an enhance ultimate tensile strength of 835 MPa and excellent tensile ductility of 16.0%. Analysis of the deformation behavior of the alloy in different states revealed that the α/β_(t)composite structures brought about an enhanced strain hardening capability by heterogeneous deformation effect of hard β_(t)and soft α-laths, which inhibited the formation of microcracks and consequently improved the coordinated deformation.
关 键 词:Nearα-Ti alloy Coarse pre-alloyed powder Hydrogenation Tensile properties Deformation behaviour
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