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Phase Transformations and Super-Elasticity of a Ni-rich TiNi Alloy with Ultrafine-Grained Structure

机译:具有超细晶结构的富镍TiNi合金的相变和超弹性

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A Ni-rich Ti-50.7.at%Ni alloy was processed by Equal Channel Angular Extrusion (ECAE) at 500℃. After 8 passes ECAE, microstructure was refined to sub-micron scale, approximately 0.2 μm~0.3 urn. TEM observation reveals that Ti_3Ni_4 phase precipitated in Ni-rich Ti-50.7.at%Ni alloy during the preheating treatment before each ECAE pass, but re-dissolved during sequent ECAE processes. After ECAE treatment, the B2→R transformation occurred within a larger temperature range. Comparing with the solution-treated TiNi specimen, the martensitic transformations start (Ms) and peak temperatures (Mp) of TiNi specimens ECAEed were dramatically lowered. Super-elasticity characteristics of TiNi alloy were tested by tensile loading and unloading cycles. The results reveal that at a tensile strain of 4% or smaller, ultrafine-grained (UFG) TiNi alloy processed by 4 passes ECAE shows better super-elasticity than solution-treated sample. Microstructure evolution and its effect on phase transformations and super-elasticity characteristics have been discussed.
机译:富镍的Ti-50.7.at%Ni合金在500℃下通过等通道角挤压(ECAE)加工。经过8次ECAE后,微结构被细化至亚微米级,约0.2μm〜0.3 um。 TEM观察表明,在每次ECAE通过之前的预热处理期间,Ti_3Ni_4相在富Ni的Ti-50.7.at%Ni合金中析出,但在随后的ECAE过程中重新溶解。 ECAE处理后,B2→R转变发生在较大的温度范围内。与固溶处理的TiNi试样相比,ECAEed的TiNi试样的马氏体转变开始(Ms)和峰值温度(Mp)大大降低。通过拉伸加载和卸载循环测试了TiNi合金的超弹性特征。结果表明,在4%或更小的拉伸应变下,经4次ECAE处理的超细晶粒(UFG)TiNi合金显示出比固溶处理的样品更好的超弹性。讨论了组织演变及其对相变和超弹性特征的影响。

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