Tensile deformation of NiTi wires
Author:
Publisher
Wiley
Subject
Metals and Alloys,Biomedical Engineering,Biomaterials,Ceramics and Composites
Reference53 articles.
1. On the nature of the biocompatibility and on medical applications of NiTi shape memory and superelastic alloys
2. Review of shape memory alloys medical applications in Russia
3. Studies and applications of NiTi shape memory alloys in the medical field in China
4. The utility of superelasticity in medicine
5. Medical shape memory alloy applications—the market and its products
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1. Berkovich indentation and the Oliver-Pharr method for shape memory alloys;International Journal of Mechanical Sciences;2024-05
2. Superelasticity Behaviour of NiTi Actuator at Different Strain Rates;J AERONAUT ASTRONAUT;2024
3. Microstructure evolution and shape memory behaviors of Ni47Ti44Nb9 alloy subjected to multistep thermomechanical loading with different prestrain levels;Journal of Materials Science & Technology;2024-02
4. An investigation on reorientation and textural evolution in a martensitic NiTi rolled sheet using EBSD;International Journal of Plasticity;2022-12
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