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
语言学
哲学
热的
物理
有机化学
作者
Chengyang Xiong,Yan Li,Jian Zhang,Yu Wang,Wentao Qu,Yuanchao Ji,Lishan Cui,Xiaobing Ren
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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