Emerging of high entropy alloy reinforced composites radiation shielding materials: Configurational structure and radiation shielding properties

被引:1
|
作者
Uyar, Esra [1 ,2 ]
Pul, Muharrem [3 ]
Akay, Defne [4 ]
Simsek, Tuncay [5 ]
机构
[1] Gazi Univ, Fac Sci, Dept Phys, TR-06500 Ankara, Turkiye
[2] Gazi Univ, Basic & Engn Sci Cent Lab Applicat & Res Ctr, GUTMAM, TR-06500 Ankara, Turkiye
[3] Kirikkale Univ, Dept Elect & Energy, Kirikkale Vocat High Sch, TR-71450 Kirikkale, Turkiye
[4] Ankara Univ, Fac Sci, Dept Phys, TR-06100 Ankara, Turkiye
[5] Kirikkale Univ, Kirikkale Vocat High Sch, Dept Mech & Met Technol, TR-71450 Kirikkale, Turkiye
关键词
High entropy alloy; Al; 2024; Microstructure; Phase analysis; Radiation shielding;
D O I
10.1016/j.jallcom.2024.178210
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this study, equimolar high entropy FeCoNiCrNb nanocrystal material was added to 2024 quality aluminum alloy with powder metallurgy technique at 2 %, 4 %, 8 %, 16 %, 32 % and 64 % weight ratios to obtain nanocomposite structures. The microstructures of the obtained composite samples were examined by SEM imaging, elemental distributions by EDS analysis and phase structures by XRD analysis techniques. Then, in order to examine the radiation shielding feature, measurements were carried out with HPGe detector using 241Am, 133Ba, 57Co, 137Cs, 54Mn, and 60Co point sources with gamma energy in the energy range of 59.5 keV-1332.5 keV. In the final stage of the study, a series of mechanical property assessments were conducted on the nanocomposite structures, including hardness measurements, compressive strength tests and abrasive wear tests. In SEM examinations, it was observed that there was homogeneity in the surface grain distribution and the homogeneity gradually improved with the increase in the FeCoNiCrNb reinforcement ratio. However, it was determined that the increasing reinforcement amount caused agglomeration in places. The chemical presence of main matrix aluminum and high entropy reinforcement elements was determined by EDAX analysis. From the XRD analyses of composite structures, it has been determined that the Al phase is the dominant phase within the structure, the HEA alloy maintains its stability, and no interphase has formed between the HEA alloy and the main matrix. According to the linear attenuation coefficient, radiation protection efficiency, mean free path, and half value layer data obtained from this experimental study, it was concluded that the high entropy FeCoNiCrNb material provides a large amount of gamma-ray radiation shielding property, especially in the low energy region (92 % shielding efficiency at 59.5 keV, 76 % at 81 keV). Additionally, it has been determined that the hardness, compressive strength and abrasive wear resistance of composite structures are increased with the addition of high entropy FeCoNiCrNb.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Radiation shielding properties of composites of TiZrNbHfTa refractory high entropy alloy reinforced with TiZrNbHfTaOx high-entropy oxide
    Guler, Omer
    Yilmaz, Demet
    Kanca, M. Sait
    Edalati, Kaveh
    Tasgin, Yahya
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 995
  • [2] Microstructure and Thermal and Radiation Shielding Properties of CoCrFeNiAg High Entropy Alloy
    Yaykasli, Hakan
    Eskalen, Hasan
    Kavun, Yusuf
    Gogebakan, Musa
    Kaya, Ahmet Hulusi
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2024, 33 (18) : 9686 - 9698
  • [3] CoCrFeNiSi high entropy alloy: Synthesis, structural and radiation shielding properties
    Yaykasli, Hakan
    Eskalen, Hasan
    Kavun, Yusuf
    Gogebakan, Musa
    Kaya, Ahmet Hulusi
    Yorulmaz, Nuri
    PROGRESS IN NUCLEAR ENERGY, 2023, 165
  • [4] Gamma radiation shielding by titanium alloy reinforced by polymeric composite materials
    Aldawood, Saad
    Asemi, Nassar N.
    Kassim, Hamoud
    Aziz, Aziz A.
    Saeed, Waseem S.
    Al-Odayni, Abdel-Basit
    JOURNAL OF RADIATION RESEARCH AND APPLIED SCIENCES, 2024, 17 (01)
  • [5] Fiber Reinforced Composite Materials for Proton Radiation Shielding
    Condruz, Mihaela Raluca
    Puscasu, Cristian
    Voicu, Lucia Raluca
    Vintila, Ionut Sebastian
    Paraschiv, Alexandru
    Mirea, Dragos Alexandru
    MATERIALE PLASTICE, 2018, 55 (01) : 5 - 8
  • [6] Radiation shielding properties of the doped carbon fiber-reinforced epoxy composites
    Erdem, Serkan
    Bulut, Fatih
    Ozcan, Mehmet Erbil
    Ogul, Hasan
    Yildiz, Yunus Onur
    RADIATION PHYSICS AND CHEMISTRY, 2023, 208
  • [7] (U)HMWPE as Neutron Radiation Shielding Materials: Impact of Gamma Radiation on Structure and Properties
    Wolff, Dietmar
    von der Ehe, Kerstin
    Jaunich, Matthias
    Boehning, Martin
    Goering, Harald
    EFFECTS OF RADIATION ON NUCLEAR MATERIALS: 25TH VOLUME, 2013, 1547 : 211 - 227
  • [8] Radiation shielding properties of polyimide composite materials
    Cherkashina, N., I
    Pavlenko, V., I
    Noskov, A., V
    RADIATION PHYSICS AND CHEMISTRY, 2019, 159 : 111 - 117
  • [9] Thermoplastic and thermoset polymer matrix composites reinforced with bismuth oxide as radiation shielding materials
    Bagheri, S.
    Khalafi, H.
    Tohidifar, M. R.
    Bagheri, Sa.
    COMPOSITES PART B-ENGINEERING, 2024, 278
  • [10] Investigation of Radiation Shielding Properties for Some Building Materials Reinforced by Basalt Powder
    Mahmoud, K. A.
    Tashlykov, O. L.
    El Wakil, A. F.
    Zakaly, Hesham M. H.
    El Aassy, I. E.
    PHYSICS, TECHNOLOGIES AND INNOVATION (PTI-2019), 2019, 2174