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April 23, 2026The European Physical Journal Plus0 citationsOpen Access

Radiation interaction characteristics and spectroscopic properties of novel produced Ni40Co10Cr10Al10Ti10B5Rx (x = 15; R: Mo, Ta, W, Nb, Gd) alloys for nuclear applications

MAMurat AygunZAZeynep AygunEEErcan Ercan

Key Points

  • This research aims to develop and evaluate the radiation shielding characteristics of novel Ni-based alloys.
  • Developed five Ni-based alloys with a specific composition.
  • Measured attenuation parameters using Phy-X/PSD software and compared them with existing literature.
  • Utilized X-ray diffraction, Scanning Electron Microscopy, and Energy Dispersive Spectroscopy for experimental analysis.
  • All alloys primarily crystallized in the FCC structure, with secondary phases depending on the refractory additions.
  • The alloy with W demonstrated superior radiation shielding performance among the tested compositions.
  • Alloys containing Nb and Gd showed lower shielding capabilities compared to others.

Abstract

Abstract The present study aims to develop five novel Ni-based alloys and systematically evaluate their radiation shielding performance. The elements Ni, Al, Ti, Cr, Co, B, Ta, Mo, Nb, Gd and W were selected for the development of Ni-based alloys with the composition Ni40Co10Cr10Al10Ti10B5Rx (x = 15; R: Mo, Ta, W, Nb, Gd). The attenuation parameters were determined using the Phy-X/PSD software and also compared with literature results. Furthermore, experimental results were obtained using X-ray diffraction, Scanning Electron Microscopy and Energy Dispersive Spectroscopy techniques. X-ray diffraction analysis demonstrates that all alloys crystallize primarily in the FCC structure; secondary phases emerge in dependence of refractory additions. The relationship between the content of Mo, Ta, W, Nb, Gd and the radiation protection capability of the alloys were evaluated. It can be noted that the alloy containing W exhibits superior shielding performance, whereas the alloys containing Nb and Gd show lower shielding capabilities. The findings of this study show that Ni-based alloys have favorable shielding properties for use as shielding materials in nuclear applications.

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Cite This Study

Aygun et al. (2026) studied this question.

synapsesocial.com/papers/69e9b85585696592c86ebad5https://doi.org/10.1140/epjp/s13360-026-07683-9
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