退火温度和预变形对镍钛形状记忆合金超弹性行为的综合影响

IF 2.2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Engineering and Performance Pub Date : 2024-09-12 DOI:10.1007/s11665-024-10077-6
Xiangguang Kong, Jiaqi Zhang, Haimin Ding, Qing Liu, Jiyu Zhou, Fugong Qi, Pengjie Wang
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引用次数: 0

摘要

通过测试面积减小 72% 和 35% 的两种样品,研究了退火温度和预变形对镍钛形状记忆合金丝超弹性行为的综合影响。结果发现,面积减小 72% 的退火样品表现出更大的马氏体转变应力,而面积减小 35% 的退火样品则表现出更好的超弹性循环稳定性。两类样品的马氏体转变应力滞后随退火温度的降低而减小。此外,预变形增强了面积减小 72% 的镍钛丝的超弹性循环稳定性并增加了应力滞后,但对面积减小 35% 的镍钛丝的应力滞后影响不大。
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Combined Effect of Annealing Temperature and Pre-deformation on the Superelastic Behaviors of NiTi Shape Memory Alloys

The combined effect of annealing temperature and pre-deformation on the superelastic behaviors of NiTi shape memory alloy wires was investigated by testing two types of samples with 72 and 35% area reduction. It is found that the annealed samples with 72% area reduction exhibited larger martensitic transformation stress, and the annealed samples with 35% area reduction exhibited superior superelastic cycle stability. The stress hysteresis of martensitic transformation for both two types of samples decreased with decreasing annealing temperature. In addition, pre-deformation enhanced the superelastic cycle stability and increased the stress hysteresis of the NiTi wires with 72% area reduction, but it had little effect on the stress hysteresis of the NiTi wires with 35% area reduction.

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来源期刊
Journal of Materials Engineering and Performance
Journal of Materials Engineering and Performance 工程技术-材料科学:综合
CiteScore
3.90
自引率
13.00%
发文量
1120
审稿时长
4.9 months
期刊介绍: ASM International''s Journal of Materials Engineering and Performance focuses on solving day-to-day engineering challenges, particularly those involving components for larger systems. The journal presents a clear understanding of relationships between materials selection, processing, applications and performance. The Journal of Materials Engineering covers all aspects of materials selection, design, processing, characterization and evaluation, including how to improve materials properties through processes and process control of casting, forming, heat treating, surface modification and coating, and fabrication. Testing and characterization (including mechanical and physical tests, NDE, metallography, failure analysis, corrosion resistance, chemical analysis, surface characterization, and microanalysis of surfaces, features and fractures), and industrial performance measurement are also covered
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