Cobalt addition effects on martensitic transformation and microstructural properties of high-temperature Cu–Al–Fe shape-memory alloys

Author:

Yildiz Koksal,Kök Mediha,Dağdelen Fethi

Publisher

Springer Science and Business Media LLC

Reference27 articles.

1. Firstov GS, Van Humbeeck J, Koval YN. High temperature shape memory alloys some recent developments. Mater Sci Eng A. 2014;378:2–10.

2. Padula II S, Bigelow G, Noebe R, Gaydosh D, Garg A. Challenges and progress in the development of high-temperature shape memory alloys based on NiTiX compositions for high-force actuator applications. In: Proceedings of the international conference on shape memory and superelastic technologies, ASM International, Metals Park (OH); 2006.

3. Wadood A, Yamabe-Mitarai Y. TiAu and TiPt high temperature shape memory alloys. In: Proceeding of 2014 11th international Bhurban conference on applied sciences and technology, Pakistan; 2014.

4. He Z, Wang F, Zhou J. Transformation, deformation and microstructure characteristics of Ru50Ta50 high temperature shape memory alloy. J Mater Sci Technol. 2006;22–5:634–8.

5. Sathish S, Mallik US, Raju TN. Microstructure and shape memory effect of Cu–Zn–Ni shape memory alloy. J Miner Mater Charact Eng. 2014;2:71–7.

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