Article ID Journal Published Year Pages File Type
6761480 Nuclear Engineering and Design 2015 14 Pages PDF
Abstract
For monolithic fuel plates with U-Mo foil and Zircalloy cladding, the three-dimensional large deformation incremental constitutive relations and stress update algorithms in the co-rotational coordinate framework are developed for the fuel and cladding with their respective irradiation effects involved. Three-dimensional finite element simulation of their in-pile thermo-mechanical coupling behaviors under a location-dependent irradiation condition is implemented via the validated user-defined subroutines UMATHT and UMAT in ABAQUS. Comparison of the simulation results for two cases with or without creep considered in the U-Mo foil indicates that with the irradiation creep included (1) considerable stress-relaxation appears in the U-Mo foil, and the mechanical interaction between fuel and cladding is weakened; (2) approximately identical thickness increments in the plate and fuel foil exist and become comparably larger; (3) plastic deformation in the cladding is significantly diminished.
Related Topics
Physical Sciences and Engineering Energy Energy Engineering and Power Technology
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