Superelasticity over a wide temperature range in metastable β-Ti shape memory alloys

假弹性 材料科学 形状记忆合金 马氏体 亚稳态 无扩散变换 大气温度范围 压力(语言学) 热弹性阻尼 冶金 热力学 微观结构 化学 哲学 有机化学 物理 语言学 热的
作者
Chengyang Xiong,Yan Li,Jian Zhang,Yu Wang,Wentao Qu,Yuanchao Ji,Lishan Cui,Xiaobing Ren
出处
期刊:Journal of Alloys and Compounds [Elsevier BV]
卷期号:853: 157090-157090 被引量:31
标识
DOI:10.1016/j.jallcom.2020.157090
摘要

Shape memory alloys (SMAs) offer many technological advantages in various applications due to shape memory effect and superelasticity. Among them, superelasticity persists within a narrow temperature range (<100 K), beyond which, superelasticity disappears due to the loss of reversibility in the thermoelastic martensite. Here we present a unique metastable β-Ti SMA of Ti-19Nb-10Zr-1Fe, showing the classic superelasticity over a wide temperature range from 123 K to 373 K. It is verified experimentally to be originated from two concurrent nano-scale transitions: β → α″ martensitic nanodomains (strain glass transition), and β → nano-sized a-ω precipitates. Requiring no pre-training, a classic superelasticity with stress plateaus was associated with the reversible stress-induced strain glass to martensite transformation by in-situ SXRD. Further, a temperature-stress phase diagram was constructed, which facilitates the understanding of wide temperature superelasticity in metastable β-Ti SMAs, and may serve as a guide map for future designing and application of advanced β-Ti based SMAs.

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