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Effect of Annealing on the Transformation Behavior and Mechanical Properties of Two Nanostructured Ti-50.8at.Ni Thin Wires Produced by Different Methods

机译:退火对两种纳米结构Ti-50.8AT的转化行为和力学性能的影响。不同方法产生的薄丝

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A Ti-50.8at.%Ni wire produced using a co-drawing method and a commercial Ti-50.8at.%Ni wire were annealed at different temperatures between 450°C and 700°C. Grains with diameter less than 100nm were revealed by transmission electron microscopy for both wires before annealing treatment. However, the microstructural heterogeneity of the co-drawn wire is more obvious than that of the commercial wire. Multi-stage martensitic transformation was observed in the co-drawn wire, compared with the one-stage A?M transformation in the commercial wire after annealing at 600°C for 30min. The differences of total elongation, plateau strain and pseudoelastic recoverable strain between the commercial wire and the co-drawn wire were also observed. The differences of the transformation behavior and mechanical properties between the commercial wire and the co-drawn wire are attributed to the microstructural difference between these two wires.
机译:使用共拉法和商业Ti-50.8AT产生的Ti-50.8AT。%Ni丝。%Ni丝在450℃和700℃之间的不同温度下退火。通过在退火处理之前,通过透射电子显微镜显示直径小于100nm的晶粒。然而,共拉线的微观结构异质性比商业丝的微观结构更明显。与在600℃下在600℃下进行30min后,在共拉线中观察到多级马氏体转换。与商业丝中的单级AΔM变换相比。还观察到商业线和共拉线之间的总伸长率,平台应变和伪弹性可回收应变的差异。商业线和共绘线之间的变换行为和机械性能的差异归因于这两根电线之间的微观结构差异。

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