Determination of gamma radiation shielding efficiency by radiation-resistant composite ZrO2–Al2O3 – TiO2–WO3 – Nb2O5 ceramics

K.K. Kadyrzhanov, Marina Koņuhova, Anatoli I. Popov, Dmitriy D. Shlimas, Daryn B. Borgekov

Optical Materials · 2024 · 20 citations · 31 references

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Abstract

This work examines the prospects of using composite ZrO 2 –Al 2 O 3 – TiO 2 –WO 3 – Nb 2 O 5 ceramics as shielding and radiation-resistant materials as structural materials in conditions of heightened radiation background, including gamma radiation and exposure to heavy ions. The key objective of the study is to determine the impact of the variation in composite ceramic composition on resistance to radiation damage caused by exposure to heavy ions comparable to nuclear fuel fission fragments , and to establish the effect of the radiation damage accumulation on the shielding characteristics of these ceramics, the maintenance of which determines the stability of the operation of nuclear materials by eliminating the ionization factor caused by the interaction of gamma quanta . During the studies, it was found that alterations in the phase composition of composite ceramics associated with the formation of ZrTiO 4 , AlWO 3 and Nb 2 W 3 O 14 phases in the structure lead not only to strengthening of the ceramics, but also to a rise in resistance to radiation damage, and associated changes in the damaged layer degradation, having an adverse impact on the shielding characteristics. • The effect of radiation damage caused by irradiation with heavy Kr 15+ ions on the shielding characteristics. • Using composite ZrO 2 –Al 2 O 3 – TiO 2 –WO 3 – Nb 2 O 5 ceramics as shielding and radiation-resistant materials. • Results of determination of induced absorption spectra determined in comparison with ZrO 2 . • Assessment results of the shielding parameters of ceramics depending on the irradiation fluence.

References

31