Published April 1977 | Version v1
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Mechanisms of fuel-cladding chemical interaction: US interpretation

Creators

  • 1. General Electric Company, Vallecitos Nuclear Center, Pleasanton, CA (United States)

Description

Proposed mechanisms of fuel-cladding chemical interaction (FCCI) in LMFBR fuel pins are reviewed and examined in terms of in-pile and out-of-pile data. From this examination several factors are identified which may govern the occurrence of localized deep intergranular penetrations of Type-316SS cladding. Using a plausible mechanistic hypothesis for FCCI, first steps have been taken towards developing a quantitative, physically-meaningful, mathematical method of predicting cladding wastage in operating fuel pins. Both kinetic and thermodynamic aspects of FCCI are considered in the development of this prediction method, together with a fuel chemistry model that describes the evolution of thermochemical conditions at the fuel-cladding gap. On the basis of results from recent fuel pin and laboratory tests a thermal transport mechanism has been proposed to explain the thermal gradient-induced migration of Fe, Cr, and Ni from cladding into the fuel. This mechanism involves chemical transport of the metallic cladding components (as tellurides) in liquid Cs-Te. (author)

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Part of:
Technical committee meeting on fuel and cladding interaction. Summary report

Additional details

Publishing Information

Imprint Title
Technical committee meeting on fuel and cladding interaction. Summary report
Imprint Pagination
208 p.
Journal Page Range
p. 170-189
Report number
IWGFR--16

Conference

Title
IAEA-IWGFR technical committee meeting on fuel and cladding interaction
Dates
21-25 Feb 1977
Place
Tokyo (Japan)

Optional Information

Notes
29 refs, 6 figs, 1 tab