Chemical reactions of caesium, tellurium and oxygen with fast breeder reactor cladding alloys: Part I — The corrosion by tellurium
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[1] C. Mathews,et al. Thermochemistry of metal-rich chromium telluride and its role in fuel-clad chemical interactions , 1989 .
[2] H. Matzke,et al. Oxygen potential of high burn-up fast breeder oxide fuel , 1988 .
[3] C. Mathews,et al. Vaporization thermodynamics of (iron + tellurium): a high-temperature mass-spectrometric study , 1988 .
[4] R. Prasad,et al. Thermodynamic properties of Cr1 − xTe for x = 0.546 and 0.526 , 1988 .
[5] C. Mathews,et al. VAPORISATION THERMODYNAMICS OF THE NICKEL-RICH PHASES IN THE Ni-Te BINARY SYSTEM - A HIGH TEMPERATURE MASS SPECTROMETRIC STUDY , 1987 .
[6] M. Sugisaki,et al. Simultaneous oxidation and tellurization of SUS-316 stainless steel for fast breeder reactor fuel cladding☆ , 1987 .
[7] H. Kleykamp,et al. The chemical state of the fission products in oxide fuels , 1985 .
[8] E. A. Aitken,et al. Chemical thermodynamics of Cs and Te fission product interactions in irradiated LMFBR mixed-oxide fuel pins , 1985 .
[9] H. Ipser,et al. Transition metal-chalcogen systems viii: The CrTe phase diagram , 1983 .
[10] R. Woodley. Variation in the oxygen potential of a mixed-oxide fuel with simulated burnup , 1978 .
[11] J. Antill,et al. Influence of tellurium on caesium-enhanced corrosion of stainless steel , 1977 .
[12] R. Lobb,et al. A study of the 20% Cr/25% Ni/Nb stabilised stainless steel-tellurium reaction , 1976 .
[13] H. Ipser,et al. Transition metal—Chalcogen systems, V. , 1974 .
[14] P. Hofmann,et al. Attack upon the cladding of oxide fuel pins by fuel and fission products , 1974 .
[15] Kenneth C. Mills,et al. Thermodynamic data for inorganic sulphides, selenides and tellurides , 1974 .
[16] K. Komarek,et al. Übergangsmetall-Chalkogensysteme, 3. Mitt.: Das System Nickel-Tellur , 1972 .
[17] H. Haraldsen,et al. Magnetochemische Untersuchungen. XXVII. Magnetische und röntgenographische Untersuchungen am System Chrom–Tellur , 1937 .