Characterization and Processing of High Temperature Shape Memory Alloys for Aerospace Applications
Author:
Affiliation:
1. University of North Texas
2. Texas A&M University
Publisher
American Institute of Aeronautics and Astronautics
Link
https://arc.aiaa.org/doi/pdf/10.2514/6.2019-1196
Reference21 articles.
1. Martensitic transformation, ductility, and shape-memory effect of polycrystalline Ni56Mn25 –xFexGa19alloys
2. The effect of training on two-way shape memory effect of binary NiTi and NiTi based ternary high temperature shape memory alloys
3. Microstructural characterization and shape memory characteristics of the Ni50.3Ti34.7Hf15 shape memory alloy
4. Benafan, O., Brown, J., Calkins, F. T., Kumar, P., Stebner, A., Turner, T., Vaidyanathan, R., Webster, J., and Young, M. L., 2011, "Shape Memory Alloy Actuator Design: CASMART Collaborative Best Practices," (54716), pp. 493-503.
5. Shape memory alloy actuator design: CASMART collaborative best practices and case studies
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3. Effect of Nickel Content on Processing of Ni-Rich NiTiHf High-Temperature Shape Memory Alloys;Shape Memory and Superelasticity;2021-05-06
4. Microstructural and Thermomechanical Comparison of Ni-Rich and Ni-Lean NiTi-20 at.% Hf High Temperature Shape Memory Alloy Wires;Shape Memory and Superelasticity;2019-12
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