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Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders

Cilt: 9 Sayı: 1 30 Haziran 2025
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Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders

Öz

Todays, Middle Entropy Alloys (MEA) are a relatively new production method and have extraordinary advantages over classical methods. The biggest advantage is defined as the production of complex compounds that cannot be combined with known methods. MEAs prepared with transition metals such as Fe, Ni, Co have an important place due to their superior properties such as anti-oxidation, corrosion and wear behavior. Metals with refractory properties such as W, Mo, Nb are interesting due to their high hardness as well as high temperature applications. In this study, which aims to characterize two different MEA powders produced, MEA powders were produced using refractory metals such as W, Mo and Nb and transition metal powders such as Fe, Ni and Co. The difference of this publication is that all powders are not brought together at once during production, but W, Mo, Nb and Fe, Ni, Co powders are produced separately and combined later. Mechanical Alloying (MA) was preferred as the production method due to its advantages such as reducing grain size and ensuring chemical homogenization. XRD, SEM and EDS (mapping) analyses were performed for the characterization of the obtained medium entropy alloy composite. Thanks to the MA technique, the powder sizes were reduced and both MEA powders were successfully distributed homogeneously within each other.

Anahtar Kelimeler

Characterization, Complex Compounds, FeNiCo, Middle Entropy Alloy, WMoNb.

Destekleyen Kurum

Çalışmayı destekleyen herhangi bir kurum yoktur.

Proje Numarası

Herhangi bir proje kapsamında yapılmamıştır.

Etik Beyan

Çalışmada etiklik belgesi gerektirecek bir durum yoktur.

Teşekkür

Çalışmayı destekleyen herhangi bir şahıs yoktur.

Kaynakça

  1. Gorsse, S., Couzinié, J. P., & Miracle, D. B. (2018). From high-entropy alloys to complex concentrated alloys. Comptes Rendus Physique, 19(8), 721–736.
  2. Youssef, K. M., Zaddach, A. J., Niu, C., Irving, D. L., & Koch, C. C. (2014). A novel low-density, high-hardness, high-entropy alloy with close-packed single-phase nanocrystalline structures. Materials Research Letters, 3(2), 95–99.
  3. Yeh, J. W., Chen, S. K., Lin, S. J., Gan, J. Y., Chin, T. S., Shun, T. T., ... & Chang, S. Y. (2004). Nanostructured high-entropy alloys with multiple principal elements: Novel alloy design concepts and outcomes. Advanced Engineering Materials, 6(5), 299–303.
  4. Cabrera, M., Oropesa, Y., Sanhueza, J. P., Tuninetti, V., & Oñate, A. (2024). Multicomponent alloys design and mechanical response: From high entropy alloys to complex concentrated alloys. Materials Science and Engineering R Reports, 161.
  5. Yeh, J. W. (2015). Physical metallurgy of high-entropy alloys. JOM, 67(10), 2254–2261.
  6. Yeh, J. W. (2013). Alloy design strategies and future trends in high-entropy alloys. JOM, 65(12), 1759–1771.
  7. Gupta, M. (n.d.). Multiple component alloys: The way forward in alloy design. Materials Science Research India, 16, 1.
  8. Dye, J. L. (2015). The alkali metals: 200 years of surprises. Philosophical Transactions of the Royal Society A, 373(2037).
  9. Emsley, J. (2011). Nature’s building blocks: An A–Z guide to the elements (New edition). London: Oxford University Press.
  10. B. V., & A. X. M. (2024). Development of high entropy alloys (HEAs): Current trends. Heliyon, 10(7), e26464.

Kaynak Göster

APA
Albayrak, M. G. (2025). Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders. International Journal of Innovative Engineering Applications, 9(1), 100-107. https://doi.org/10.46460/ijiea.1648175
AMA
1.Albayrak MG. Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders. ijiea, IJIEA. 2025;9(1):100-107. doi:10.46460/ijiea.1648175
Chicago
Albayrak, Muhammet Gökhan. 2025. “Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders”. International Journal of Innovative Engineering Applications 9 (1): 100-107. https://doi.org/10.46460/ijiea.1648175.
EndNote
Albayrak MG (01 Haziran 2025) Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders. International Journal of Innovative Engineering Applications 9 1 100–107.
IEEE
[1]M. G. Albayrak, “Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders”, ijiea, IJIEA, c. 9, sy 1, ss. 100–107, Haz. 2025, doi: 10.46460/ijiea.1648175.
ISNAD
Albayrak, Muhammet Gökhan. “Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders”. International Journal of Innovative Engineering Applications 9/1 (01 Haziran 2025): 100-107. https://doi.org/10.46460/ijiea.1648175.
JAMA
1.Albayrak MG. Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders. ijiea, IJIEA. 2025;9:100–107.
MLA
Albayrak, Muhammet Gökhan. “Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders”. International Journal of Innovative Engineering Applications, c. 9, sy 1, Haziran 2025, ss. 100-7, doi:10.46460/ijiea.1648175.
Vancouver
1.Muhammet Gökhan Albayrak. Production and Characterization of Composite Powder from Medium Entropy Alloys Produced Using W, Mo, Nb – Fe, Ni, Co Powders. ijiea, IJIEA. 01 Haziran 2025;9(1):100-7. doi:10.46460/ijiea.1648175