Fuel-cladding chemical interaction resistant nuclear fuel elements and methods for manufacturing the same
US-2019043625-A1 · Feb 7, 2019 · US
US12284748B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12284748-B2 |
| Application number | US-202016944759-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 31, 2020 |
| Priority date | Jul 31, 2019 |
| Publication date | Apr 22, 2025 |
| Grant date | Apr 22, 2025 |
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Fissile target materials are provided. The fissile target materials can include a target substrate and a capturing layer operably interfacing with at least one surface of the target substrate. Fission fissile target materials are also provided that can include a target substrate comprising at least one fissile atom and a capturing layer operably interfacing with at least one surface of the target substrate. The capturing layer can include at least one fission product.
Opening claim text (preview).
The invention claimed is: 1. A fissile target material of a nuclear reaction, the fissile target material comprising: a target substrate, wherein the target substrate comprises a fissile target material including uranium; a first capturing layer operably interfacing with a surface of the target substrate, the first capturing layer being of a first composition and configured to capture at least one of a first set of predetermined nuclear reaction fission products generated by irradiation of the fissile target material; a second capturing layer operably interfacing with a surface of the first capturing layer, the second capturing layer being of a second composition and configured to capture at least one of a second set of predetermined nuclear reaction fission products generated by irradiation of the fissile target material, wherein the first composition comprises a different material than the second composition and the first set of nuclear reaction fission products are different from the second set of nuclear reaction fission products; and wherein the interface between the target substrate and the first capturing layer is configured to allow for the first capturing layer to be removed from the target substrate after irradiation. 2. The fissile target material of claim 1 wherein the first capturing layer comprises a metal. 3. The fissile target material of claim 1 wherein the first capturing layer comprises V. 4. The fissile target material of claim 1 wherein in at least one cross section, the thickness of the fissile target material is from 12 μm to 40 μm. 5. The fissile target material of claim 1 wherein in at least one cross section, the thickness of the target substrate is from 3 μm to 5 μm. 6. The fissile target material of claim 1 wherein in at least one cross section, the thickness of either or both of the first or second capturing layers is from 9 μm to 35 μm. 7. The fissile target material of claim 6 wherein the thickness of the first capturing layer is greater than 9 μm. 8. The fissile target material of claim 1 wherein the interface between the first capturing layer and the second capturing layer is configured to allow for the second capturing layer to be removed from the first capturing layer.
with coating on fuel or on inside of casing; with non-active interlayer between casing and active material {with multiple casings or multiple active layers} · CPC title
Selection of substances for use as reactor fuel · CPC title
Manufacture of fuel elements or breeder elements contained in non-active casings · CPC title
Other isotopes not provided for in the groups listed above · CPC title
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