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- W3017949846 abstract "Multi-metallic layered composite (MMLC) fuel cladding is designed to survive a longer period of time during accident scenarios for light water reactor (LWR) fuel. One proposed MMLC cladding concept joining Zircaloy to steel via interaction barrier layers will increase corrosion resistance, but result in a neutron absorption penalty. This cladding could also result in negative impacts due to mismatches between the mechanical behavior of its layers. In this study, the mechanical performance of the MMLC has been evaluated in two ways: small scale thermo-mechanical simulations and full-length fuel rod simulations. Both were carried out using the BISON fuel performance code. The small scale simulations predicted a reduction in residual stress and elastic deformation compared with standard Zircaloy cladding. The fuel rod simulations predicted decreased creep strain, larger pellet-clad gaps, and possible plastic deformation under long time use when compared to Zircaloy and stainless-steel cladding alone. The performance of various gap widths and layer thicknesses were compared to assist in the design of MMLC cladding; we recommend an MMLC with a Zircaloy/steel layer thickness ratio of at least 1.75 and an initial gap width of 40 μm." @default.
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- W3017949846 date "2020-07-01" @default.
- W3017949846 modified "2023-09-27" @default.
- W3017949846 title "Evaluations of the performance of multi-metallic layered composite cladding for the light water reactor accident tolerant fuel" @default.
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- W3017949846 doi "https://doi.org/10.1016/j.jnucmat.2020.152136" @default.
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