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TiZrNbAl合金中大型低应力弹性热效应的实现

Realization of Large Low-Stress Elastocaloric Effect in TiZrNbAl Alloy.

作者信息

Lv Bang-He, Xiang Hua-You, Gao Shang, Guo Yan-Xin, Yang Jin-Han, Zou Nai-Fu, Zhao Xiaoli, Li Zongbin, Yang Bo, Jia Nan, Yan Hai-Le, Zuo Liang

机构信息

Key Laboratory for Anisotropy and Texture of Materials (Ministry of Education), School of Material Science and Engineering, Northeastern University, Shenyang 110819, China.

Institute of Materials Science and Engineering, Shenyang Aerospace University, Shenyang 110136, China.

出版信息

Materials (Basel). 2024 Feb 14;17(4):885. doi: 10.3390/ma17040885.

Abstract

Seeking novel high-performance elastocaloric materials with low critical stress plays a crucial role in advancing the development of elastocaloric refrigeration technology. Here, as a first attempt, the elastocaloric effect of TiZrNbAl shape memory alloy at both room temperature and finite temperatures ranging from 245 K to 405 K, is studied systematically. Composition optimization shows that Ti-19Zr-14Nb-1Al (at.%), possessing excellent room-temperature superelasticity with a critical stress of around 100 MPa and a small stress hysteresis of around 70 MPa and outstanding fracture resistance with a compressive strain of 20% and stress of 1.7 GPa, demonstrates a substantial advantage as an elastocaloric refrigerant. At room temperature, a large adiabatic temperature change (ΔTad) of -6.7 K is detected, which is comparable to the highest value reported in the Ti-based alloys. A high elastocaloric cyclic stability, with almost no degradation of ΔTad after 4000 cycles, is observed. Furthermore, the sizeable elastocaloric effect can be steadily expanded from 255 K to 395 K with a temperature window of as large as 140 K. A maximum ΔTad of -7.9 K appears at 355 K. The present work demonstrates a promising potential of TiZrNbAl as a low critical stress and low hysteresis elastocaloric refrigerant.

摘要

寻找具有低临界应力的新型高性能弹性热材料对于推动弹性热制冷技术的发展起着至关重要的作用。在此,作为首次尝试,系统地研究了TiZrNbAl形状记忆合金在室温以及245 K至405 K的有限温度范围内的弹性热效应。成分优化表明,Ti-19Zr-14Nb-1Al(原子百分比)具有出色的室温超弹性,临界应力约为100 MPa,应力滞后约为70 MPa,并且具有出色的抗断裂性能,压缩应变达20%,应力为1.7 GPa,作为弹性热制冷剂具有显著优势。在室温下,检测到-6.7 K的大绝热温度变化(ΔTad),这与钛基合金中报道的最高值相当。观察到高弹性热循环稳定性,在4000次循环后ΔTad几乎没有降解。此外,可观的弹性热效应可以在255 K至395 K范围内稳定扩展,温度窗口高达140 K。在355 K时出现最大ΔTad为-7.9 K。目前的工作表明TiZrNbAl作为一种低临界应力和低滞后的弹性热制冷剂具有广阔的潜力。

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