Effects of dynamic loading on nano-scale depth-recovery and damping property of single crystal CuAlNi shape memory alloy
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference13 articles.
1. Nonlocal Superelastic Model of Size-Dependent Hardening and Dissipation in Single Crystal Cu-Al-Ni Shape Memory Alloys
2. Characteristic of microscopic shape memory effect in a CuAlNi alloy by nanoindentation
3. Interaction between martensitic structure and defects in β↔β′+γ′ cycling in CuAlNi single crystals. Model for the inhibition of γ′ martensite
4. The variant selection criteria in single-crystal CuAlNi shape memory alloys
5. Nanoscale shape-memory alloys for ultrahigh mechanical damping
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1. Effect of solidification direction on the thermodynamic parameters and damping capacity of a CuAlBeNbNi shape memory alloy;The European Physical Journal Plus;2023-12-13
2. Mechanical and Thermal Behavior of Cu84−xAl13Ni3Hfx Shape Memory Alloys;Iranian Journal of Science and Technology, Transactions A: Science;2020-11-01
3. Microstructure, mechanical properties and shape memory effect of Cu–Hf–Al–Ni alloys;Materials Science and Technology;2018-04-16
4. Study of Cu–Al–Ni–Ga as high-temperature shape memory alloys;Applied Physics A;2018-02-14
5. Cu-Al-Ni-V high-temperature shape memory alloys;Intermetallics;2018-01
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