Enhanced superelasticity of Cu—Al—Ni shape memory alloys with strong orientation prepared by horizontal continuous casting
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s11706-022-0616-6.pdf
Reference32 articles.
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2. Yang R, Li S, Zhang N, et al. Tribology behaviors of Ti—Ni51.5 at% shape memory alloy with different microstructures and textures. Rare Metals, 2021, 40(12): 3616–3626
3. Canbay C A, Karaduman O, Ünlü N, et al. Energetic behavior study in phase transformations of high temperature Cu—Al—X (X: Mn, Te, Sn, Hf) shape memory alloys. Transactions of the Indian Institute of Metals, 2021, 74(10): 2447
4. Ünlü N, Ozkul I, Canbay C A. Investigation of shape memory behavior in Cu-based quaternary shape memory alloys. 34th Turkish Physical Society International Physics Congress, 2018
5. Aydogdu Y, Turabi A S, Aydogdu A, et al. The effects of substituting B for Cu on the magnetic and shape memory properties of CuAlMnB alloys. Applied Physics A: Materials Science & Processing, 2016, 122(7): 687
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1. Ultrasounds Induced Microstructure Transition and Improved Mechanical Property of Directionally Solidified Ternary Cu–Al–Ni Alloy;Metallurgical and Materials Transactions B;2024-07-24
2. Machine learning-assisted efficient design of Cu-based shape memory alloy with specific phase transition temperature;International Journal of Minerals, Metallurgy and Materials;2024-04
3. Gyroid Triply Periodic Minimal Surface Lattice Structure Enables Improved Superelasticity of CuAlMn Shape Memory Alloy;Acta Metallurgica Sinica (English Letters);2024-03-05
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