Radial-hydride embrittlement of high-burnup zircaloy-4 fuel cladding

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Abstract

Prestorage drying operations of high-burnup fuel may make Zircaloy-4 (Zry-4) fuel cladding more susceptible to failure, especially during fuel handling, transport, and post-storage retrieval. In particular, hydride precipitates may reorient from the circumferential to the radial direction of the cladding during drying operations if a threshold level of hoop stress at or above a corresponding threshold temperature is exceeded. This study indicates that the threshold stress is approximately 75–80 MPa for both nonirradiated and high-burnup stress-relieved Zry-4 fuel cladding cooled from 400°C and, under ring compression at both room temperature and 150°C, that radial-hydride precipitation embrittles Zry-4. Specifically, the plastic tensile hoop strain needed to initiate unstable crack propagation along radial hydrides decreases dramatically from >8% to lt;1% as radial-hydride fraction increases. Lower hydrogen contents (lr;300wppm) appear to be more susceptible to radial-hydride embrittlement compared to higher contents (>600 wppm), like that found in high-burnup Zry-4. © 2006 Taylor and Francis Group, LLC.

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Daum, R. S., Majumdar, S., Liu, Y., & Billone, M. C. (2006). Radial-hydride embrittlement of high-burnup zircaloy-4 fuel cladding. Journal of Nuclear Science and Technology, 43(9), 1054–1067. https://doi.org/10.1080/18811248.2006.9711195

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