Hofman et al., 1986 - Google Patents
Chemical interaction of metallic fuel with austenitic and ferritic stainless steel claddingHofman et al., 1986
View PDF- Document ID
- 83894195595867714
- Author
- Hofman G
- Hins A
- Porter D
- Leibowitz L
- Wood E
- Publication year
External Links
Snippet
The combination of metallic fuel and stainless steel cladding in a fuel element forms a complex multicomponent diffusion couple at elevated temperatures. Interdiffusion of fuel and cladding components can in principle lead to several phenomena that could affect the …
- 239000000446 fuel 0 title abstract description 68
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Iizuka et al. | Behavior of plutonium and americium at liquid cadmium cathode in molten LiCl–KCl electrolyte | |
Domagala et al. | The systems Y-Fe, Y-Ni, and Y-Cu | |
FR2659784A1 (en) | PROCESS FOR THE TREATMENT OF HIGHLY RADIOACTIVE WASTE. | |
Hofman et al. | Chemical interaction of metallic fuel with austenitic and ferritic stainless steel cladding | |
Kurata et al. | Redistribution behavior of various constituents in U-Pu-Zr alloy and U-Pu-Zr alloy containing minor actinides and rare earths in a temperature gradient | |
DuPont et al. | Physical and welding metallurgy of Gd-enriched austenitic alloys for spent nuclear fuel applications-Part I: stainless steel alloys | |
Ushakov et al. | Interaction of UO2 and zircaloy during the Chernobyl accident | |
Benson et al. | The formation mechanism of the Zr rind in U-Zr fuels | |
Sudo et al. | Experimental evaluation of Sr and Ba distribution in ex-vessel debris under a temperature gradient | |
US3326673A (en) | Process for separating plutonium from uranium from fission products | |
Hampson et al. | The Melt Refining of Irradiated Uranium: Application to EBR-II Fast Reactor Fuel. III. Preparation of Experimental Alloys | |
Smith | Alloys of copper, nickel, and tantalum | |
Keiser Jr | Consolidation of cladding hulls from the electrometallurgical treatment of spent fuel | |
Kruger | Phase relations and structures in uranium-plutonium-fissium alloys | |
Nazaré | Investigations of uraniumsilicide-based dispersion fuels for the use of low enrichment uranium (LEU) in research and test reactors | |
Vedernikov et al. | Rules governing the behavior of the electrical resistivity and thermoelectric power of systems of binary continuous solid solutions of metals | |
Cash et al. | Compatibility studies of several molten uranium and thorium alloys in niobium, tantalum, and yttrium | |
Hosking et al. | Liquid metal infiltration of an aluminum alloy into a packed column of B/sub 4/C particles | |
Steindler et al. | Chemical Engineering Division fuel cycle programs. Quarterly progress report, April-June 1979.[Pyrochemical/dry processing; waste encapsulation in metal; transport in geologic media] | |
Roof Jr et al. | A PSEUDO-BINARY IN THE U-Cb-C SYSTEM | |
Domagala | A Study of the Solubility of Zirconium in Chromium | |
Ferguson | METALLURGICAL INVESTIGATION OF FUEL ELEMENT PINS TESTED IN LIQUID SODIUM | |
McCoy et al. | Characterization of materials for waste-canister compatibility studies | |
Yaguchi | Metal-induced embrittlement of low-carbon steel by indium in association with tellurium | |
Hayashi et al. | Formation of MPd3+ x (M= Gd, Np) by the reaction of MN with Pd and chlorination of MPd3+ x using cadmium chloride |