Characterization of the Superelastic and Structural Characteristics of β-Ti Alloys by Strain-Controlled Cycling after Thermomechanical Processing and Subsequent Ageing

V. Sheremetyev, M. Ijaz, A. Kudryashova, A. Konopatsky, S. Prokoshkin, V. Brailovski
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Abstract

In this comparative study, the structural and superelastic characteristics of two thermomechanically treated metastable Ti-Nb based (Ti-22Nb-6Zr) and Ti-Zr based (Ti-18Zr-14Nb and Ti-18Zr-13Nb-2Ta (at. %)) alloy systems were studied. To study the influence of room temperature storage on the functional properties of these two alloy systems, the alloys were subjected to a multistage testing routine consisting of four ten-cycle loading-unloading testing series alternated with three room temperature ageing periods (1, 5 and 20 days). Based on microstructure-properties relationships, it was shown that for each alloy system, the forward stress-induced martensitic transformation was essentially dependent on the material microstructure, whereas the subsequent reverse martenstic transformation was controlled by the material composition. The Ti-Zr based alloys demonstrated more stable functional behavior than their Ti-Nb based counterparts. More specifically Ti-18Zr-13Nb-2Ta, subjected to a combination of cyclic training alternated with room temperature ageing showed a significant improvement in superelastic behavior with small accumulated strains and narrow stress hysteresis.
热处理和时效后应变控制循环表征β-Ti合金的超弹性和组织特性
对比研究了两种热处理亚稳Ti-Nb基(Ti-22Nb-6Zr)和Ti-Zr基(Ti-18Zr-14Nb和Ti-18Zr-13Nb-2Ta)的结构和超弹性特性。研究了%))合金体系。为了研究室温储存对这两种合金体系功能性能的影响,对合金进行了多阶段试验,包括4个10循环的加载-卸载试验系列,交替进行3个室温时效期(1天、5天和20天)。基于组织-性能关系,结果表明:对于每种合金体系,应力诱导的正向马氏体转变主要取决于材料的微观组织,而随后的反向马氏体转变则受材料成分的控制。Ti-Zr基合金比Ti-Nb基合金表现出更稳定的功能行为。更具体地说,Ti-18Zr-13Nb-2Ta在循环训练和室温时效交替的组合下,表现出累积应变小、应力滞后窄的超弹性行为显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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