Araştırma Makalesi

Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4

Cilt: 9 Sayı: 2 4 Eylül 2025
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Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4

Abstract

Pure iron (Fe) and copper-carbon doped iron (Fe3Cu1C) material were produced using conventional powder metallurgy technique. Gamma radiation shielding properties (linear attenuation coefficient (LAC), mass attenuation coefficient (MAC), and radiation shielding efficiency (RPE)) of pure Fe and Fe3Cu1C were investigated with the Geant4 simulation toolkit in the energy range from 0.04 MeV to 6 MeV. Additionally, MAC results were compared with data obtained from the XCOM program. Maximum RPE values are observed in the low energy region between 0.04 and 0.1 MeV. While these values are 99.99% (0.04 MeV), 99.63% (0.05 MeV), 96.83% (0.06 MeV), 81.80% (0.08 MeV) and 65.59% (0.10 MeV) for Fe, they are 99.99%, 99.55% (0.05 MeV), 96.42% (0.06 MeV), 80.68% (0.08 MeV) and 64.26% (0.10 MeV) for Fe3Cu1C. The obtained results show that the produced Fe3Cu1C material may be used to protect against gamma radiation, especially at low energies.

Keywords

Destekleyen Kurum

TUBITAK (2209A)

Proje Numarası

2209A

Etik Beyan

The authors have no conflict of interest.

Teşekkür

Acknowledgments This study was supported by 2209-A University Students Research Projects Support Program.

Kaynakça

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Ayrıntılar

Birincil Dil

İngilizce

Konular

Nükleer Fizik

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

22 Temmuz 2025

Yayımlanma Tarihi

4 Eylül 2025

Gönderilme Tarihi

27 Mayıs 2025

Kabul Tarihi

21 Haziran 2025

Yayımlandığı Sayı

Yıl 2022 Cilt: 9 Sayı: 2

Kaynak Göster

APA
Tabar, E., Hoşgör, G., Ekici, M. R., Aydin, C., & Muttaqi, N. I. (2025). Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4. Journal of Nuclear Sciences, 9(2), 23-31. https://doi.org/10.59474/nuclear.2023.64
AMA
1.Tabar E, Hoşgör G, Ekici MR, Aydin C, Muttaqi NI. Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4. Journal of Nuclear Sciences. 2025;9(2):23-31. doi:10.59474/nuclear.2023.64
Chicago
Tabar, Emre, Gamze Hoşgör, Mesut Ramazan Ekici, Ceren Aydin, ve Nur Iman Muttaqi. 2025. “Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4”. Journal of Nuclear Sciences 9 (2): 23-31. https://doi.org/10.59474/nuclear.2023.64.
EndNote
Tabar E, Hoşgör G, Ekici MR, Aydin C, Muttaqi NI (01 Eylül 2025) Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4. Journal of Nuclear Sciences 9 2 23–31.
IEEE
[1]E. Tabar, G. Hoşgör, M. R. Ekici, C. Aydin, ve N. I. Muttaqi, “Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4”, Journal of Nuclear Sciences, c. 9, sy 2, ss. 23–31, Eyl. 2025, doi: 10.59474/nuclear.2023.64.
ISNAD
Tabar, Emre - Hoşgör, Gamze - Ekici, Mesut Ramazan - Aydin, Ceren - Muttaqi, Nur Iman. “Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4”. Journal of Nuclear Sciences 9/2 (01 Eylül 2025): 23-31. https://doi.org/10.59474/nuclear.2023.64.
JAMA
1.Tabar E, Hoşgör G, Ekici MR, Aydin C, Muttaqi NI. Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4. Journal of Nuclear Sciences. 2025;9:23–31.
MLA
Tabar, Emre, vd. “Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4”. Journal of Nuclear Sciences, c. 9, sy 2, Eylül 2025, ss. 23-31, doi:10.59474/nuclear.2023.64.
Vancouver
1.Emre Tabar, Gamze Hoşgör, Mesut Ramazan Ekici, Ceren Aydin, Nur Iman Muttaqi. Investigation of radiation shielding properties of pure iron and copper-carbon-doped Iron material with Geant4. Journal of Nuclear Sciences. 01 Eylül 2025;9(2):23-31. doi:10.59474/nuclear.2023.64