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Structural and Phase Transformations and Physical and Mechanical Properties of Cu-Al-Ni Shape Memory Alloys Subjected to Severe Plastic Deformation and Annealing

Alexey E. Svirid, Vladimir G. Pushin

2021Englishshape memory alloyscopper alloysmartensitic transformationsevere plastic deformationmicrostructuremechanical properties

Abstract

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Using the methods of electron microscopy and X-ray analysis in combination with measurements of the electrical resistance and magnetic susceptibility, the authors have obtained data on the peculiar features of pre-martensitic states and martensitic transformations, as well as subsequent decomposition, in the alloys with shape memory effect of Cu–14wt%Al–3wt%Ni and Cu–13.5wt%Al–3.5wt%Ni. For the first time, we established the microstructure, phase composition, mechanical properties, and microhardness of the alloys obtained in the nanocrystalline state as a result of severe plastic deformation under high pressure torsion and subsequent annealing. A crystallographic model of the martensite nucleation and the rearrangements β1→β1′and β1→γ1′are proposed based on the analysis of the observed tweed contrast and diffuse scattering in the austenite and the internal defects in the substructure of the martensite.

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Cite This Work

@article{61c4b840-ee75-40f0-a116-88e84604947f,
  title={Structural and Phase Transformations and Physical and Mechanical Properties of Cu-Al-Ni Shape Memory Alloys Subjected to Severe Plastic Deformation and Annealing},
  author={Alexey E. Svirid and Vladimir G. Pushin},
  year={2021},
  language={English}
}
TY  - JOUR
TI  - Structural and Phase Transformations and Physical and Mechanical Properties of Cu-Al-Ni Shape Memory Alloys Subjected to Severe Plastic Deformation and Annealing
AU  - Alexey E. Svirid
AU  - Vladimir G. Pushin
PY  - 2021
LA  - English
ER  -

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