Materials Research Express (Jan 2024)

An In Situ transmission electron microscopy study on the synergistic effects of Au-ion irradiation and high temperature on nuclear graphite microstructure

  • Melonie P Thomas,
  • Ryan Schoell,
  • Md Abu Jafar Rasel,
  • Md Hafijur Rahman,
  • Winson Kuo,
  • John Watt,
  • Stephen House,
  • Khalid Hattar,
  • William Windes,
  • Aman Haque

DOI
https://doi.org/10.1088/2053-1591/ad37a6
Journal volume & issue
Vol. 11, no. 4
p. 045601

Abstract

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The combined effects of high-temperature and heavy-ion irradiation on Mrozowski cracks (MC) and nuclear graphite crystallographic dimensions have been studied using in situ heating and in situ ion-irradiation in the transmission electron microscope (TEM). Electron transparent lamella of nuclear graphite, IG-110, was irradiated using a 2.8 MeV Au beam at an ion flux of 3.991 ×10 ^10 ion cm ^−2 s ^−1 for 70 min at 800 °C. Upon high-temperature irradiation, Mrozowski crack closure was studied quantitatively. The analysis showed linear, positive expansion of nuclear graphite which is significantly different from the dimensional changes previously reported for low-dose neutron irradiation of nuclear graphite in which the material undergoes negative to positive expansion via a turnaround radiation dose. The trend of the thermal expansion coefficient (CTE) of pristine IG-110 in this study is consistent with previous reports in the 100 °C–800 °C temperature region in which the dimensional change ranges from negative to positive values.

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