材料科学
假弹性
复合材料
变形(气象学)
张力(地质)
纳米晶材料
形状记忆合金
拉丝
无扩散变换
奥氏体
马氏体
微观结构
极限抗拉强度
纳米技术
作者
Gulsharat Baigonakova,Екатерина Марченко,M A Kovaleva,Alexander Vorozhtsov
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2022-07-01
卷期号:12 (7): 1131-1131
被引量:6
摘要
The present article is aimed at studying the deformation behavior of TiNi wire and knitted metal TiNi mesh under uniaxial tension and revealing the role of wire geometry on their main mechanical characteristics and mechanisms of deformation behavior. The temperature dependence curve of the electrical resistance indicates that a two-stage martensitic transformation of B2→R→B19′ is occurring, and is responsible for the superelasticity effect. The TEM results showed that at room temperature, the TiNi wire has a nanocrystalline structure composed of B2 austenite grains. A change in the deformation mechanism was established under the uniaxial tension, where the TiNi wire exhibits the effect of superelasticity, while the knitted metal TiNi mesh made from this wire is characterized by hyperelastic behavior. Fracturing of the knitted metal TiNi mesh requires significant loads of up to 3500 MPa compared to the fracture load of the TiNi wire. With the uniaxial tension of the wire, which maximally repeats the geometry of the wire in knitted metal mesh, an increase in mechanical characteristics was observed.
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