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Irradiation behaviour of Gilsocarbon graphites

โœ Scribed by R. Blackstone; R. Krefeld; M.R. Everett; W.W. Delle


Publisher
Elsevier Science
Year
1972
Tongue
English
Weight
137 KB
Volume
10
Category
Article
ISSN
0008-6223

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โœฆ Synopsis


preceding paper). In the light of the results presented in this paper, the potential of carbon and graphite fibers for use as reinforcement in composite materials designed for structural appli~tion in nuclear reactors is briefly discussed.

138. Irradiation induced changes of the mechanical properties of pyrocarbon coatings deposited from methane

W. W. Delle (K~nforschungsu~~age Ju~~ch GmbH, West Germany). Young's modulus and crushing stress of the outer pyrocarbon layer of coated fuel particles were measured before and after high-fluence and high-temperature irradiationin the Dounreay Fast Reactor (Scotland). The measuring device is described and the results are discussed in terms of fluence, irradiation temperature and pre-irradiation mechanical properties. 139. Dimensional changes induced in poorly crystalline isotropic carbons by radiation J. L. Kaae, D. W. Stevens, and J. C. Bokros (Gulf G enera Atomic Company, San Diego, California). The dimensional changes induced by fast-neutron irradiation of isotropic pyrolytic carbons deposited below 1600ยฐC have been investigated. Irradiation temperatures ranged from 600 to 1300ยฐC and fast neutron fluences extended to 8 X 10zl nvt. The density and dimensional changes are compared with those of more crystalline isotropic carbons.


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167. Irradiation behaviour of gilsocarbo
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171. Effects of changes in irradiation t
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part of a joint (Dragon/KFA/Euratom/RCN) irradiation programme in the HFR Petten, The Netherlands, extensive data were obtained on the irradiation behaviour at 8 temperature levels between 400 and 1400ยฐC of 10 different Gilsocarbon graphites. A computer technique was used to systematize and compare

111. The irradiation behavior of POCO gr
โœ A.L Pitner ๐Ÿ“‚ Article ๐Ÿ“… 1969 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 121 KB

726 CARBON 108. Irradiation of graphite in HFIR\* C. R. Kennedy (Metals and Ceramics i&&ion, Oak Ridge National Laboratory, Oak Ridge, Tennessee). Fifteen different grades of graphite have been irradiated in the High Flux Isotope Reactor to ffuences up to Z-5 X 1O22 nvt (E > 50 keV) at 715ยฐC. The di