Research Article

Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys

Volume: 5 Number: 2 December 12, 2022
EN

Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys

Abstract

Shape memory alloys are known for their ability to return to their original shape under the influence of external factors (temperature, magnetic field and mechanical stress). Although NiTi-based alloys come to mind first when the shape memory effect is mentioned, CuAl-based alloys are very popular alternatives. The low cost of copper-based alloys is the biggest reason to study. In this study, the heat treatment effects of Cu-Al-X (X: Cr, Ti) (% weight) on some thermodynamic parameters, crystal structure and microstructure of shape memory alloy were investigated at three different temperatures (973 K, 1073 K and 1173 K). The changes in the thermal transformation of the samples were determined by DSC (Differential Scanning Calorimetry) and the changes in the crystal structure were determined by X-ray diffraction (XRD), Scanning Electron Microscope (SEM) and optical microscope device. According to DSC measurement, the temperature hysteresis of the samples decreased after the heat treatment. Besides, as the entropy change decreased, the thermal stability of the samples increased. It can be seen that the particle size of the CuAlCr alloy decreased with increasing temperature. The particle size of the CuAlTi alloy increased with increasing temperature. SEM and optical images showed that chromium (Cr) was more dissolved in the alloy compared to titanium (Ti) into CuAl alloy.

Keywords

References

  1. 1. Otsuka, K. and X. Ren, Recent developments in the research of shape memory alloys. Intermetallics, 1999. 7(5): p. 511-528.
  2. 2. Qader, I.N., M. Kök, and F. Dağdelen, Effect of heat treatment on thermodynamics parameters, crystal and microstructure of (Cu-Al-Ni-Hf) shape memory alloy. Physica B: Condensed Matter, 2019. 553: p. 1-5.
  3. 3. Dasgupta, R., et al., Effect of alloying constituents on the martensitic phase formation in some Cu-based SMAs. Journal of Materials Research and Technology, 2014. 3(3): p. 264-273.
  4. 4. Kök, M. and G. Ateş, The effect of addition of various elements on properties of NiTi-based shape memory alloys for biomedical application. The European Physical Journal Plus, 2017. 132(4): p. 1-6.
  5. 5. Soliman, H. and N. Habib, Effect of ageing treatment on hardness of Cu-12.5 wt% Al shape memory alloy. Indian Journal of Physics, 2014. 88(8): p. 803-812.
  6. 6. Dagdelen, F., et al., Influence of Ni addition and heat treatment on phase transformation temperatures and microstructures of a ternary CuAlCr alloy. The European Physical Journal Plus, 2019. 134(2): p. 1-6.
  7. 7. Gustmann, T., et al., Properties of Cu-based shape-memory alloys prepared by selective laser melting. Shape Memory and Superelasticity, 2017. 3(1): p. 24-36.
  8. 8. Hannula, S.P., et al. Shape memory alloys for biomedical applications. in Advances in Science and Technology. 2006. Trans Tech Publ.

Details

Primary Language

English

Subjects

Material Production Technologies

Journal Section

Research Article

Publication Date

December 12, 2022

Submission Date

August 11, 2022

Acceptance Date

November 3, 2022

Published in Issue

Year 2022 Volume: 5 Number: 2

APA
Ateş, G., Özen Öner, E., & Kanca, M. S. (2022). Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys. Journal of Physical Chemistry and Functional Materials, 5(2), 12-16. https://doi.org/10.54565/jphcfum.1159287
AMA
1.Ateş G, Özen Öner E, Kanca MS. Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys. Journal of Physical Chemistry and Functional Materials. 2022;5(2):12-16. doi:10.54565/jphcfum.1159287
Chicago
Ateş, Gonca, Ecem Özen Öner, and Muhammed Sait Kanca. 2022. “Influence of Heat Treatment on the Phase Transformation, Thermodynamical Parameters, Crystal Microstructure, and of Cu-Al-X (X: Cr, Ti) Shape Memory Alloys”. Journal of Physical Chemistry and Functional Materials 5 (2): 12-16. https://doi.org/10.54565/jphcfum.1159287.
EndNote
Ateş G, Özen Öner E, Kanca MS (December 1, 2022) Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys. Journal of Physical Chemistry and Functional Materials 5 2 12–16.
IEEE
[1]G. Ateş, E. Özen Öner, and M. S. Kanca, “Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys”, Journal of Physical Chemistry and Functional Materials, vol. 5, no. 2, pp. 12–16, Dec. 2022, doi: 10.54565/jphcfum.1159287.
ISNAD
Ateş, Gonca - Özen Öner, Ecem - Kanca, Muhammed Sait. “Influence of Heat Treatment on the Phase Transformation, Thermodynamical Parameters, Crystal Microstructure, and of Cu-Al-X (X: Cr, Ti) Shape Memory Alloys”. Journal of Physical Chemistry and Functional Materials 5/2 (December 1, 2022): 12-16. https://doi.org/10.54565/jphcfum.1159287.
JAMA
1.Ateş G, Özen Öner E, Kanca MS. Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys. Journal of Physical Chemistry and Functional Materials. 2022;5:12–16.
MLA
Ateş, Gonca, et al. “Influence of Heat Treatment on the Phase Transformation, Thermodynamical Parameters, Crystal Microstructure, and of Cu-Al-X (X: Cr, Ti) Shape Memory Alloys”. Journal of Physical Chemistry and Functional Materials, vol. 5, no. 2, Dec. 2022, pp. 12-16, doi:10.54565/jphcfum.1159287.
Vancouver
1.Gonca Ateş, Ecem Özen Öner, Muhammed Sait Kanca. Influence of heat treatment on the phase transformation, thermodynamical parameters, crystal microstructure, and of Cu-Al-X (X: Cr, Ti) shape memory alloys. Journal of Physical Chemistry and Functional Materials. 2022 Dec. 1;5(2):12-6. doi:10.54565/jphcfum.1159287

© 2018 Journal of Physical Chemistry and Functional Materials (JPCFM). All rights reserved.
For inquiries, submissions, and editorial support, please get in touch with nbulut@firat.edu.tr or visit our website at https://dergipark.org.tr/en/pub/jphcfum.

Stay connected with JPCFM for the latest research updates on physical chemistry and functional materials. Follow us on Social Media.

Published by DergiPark. Proudly supporting the advancement of science and innovation.https://dergipark.org.tr/en/pub/jphcfum