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- W1971660189 abstract "In the design of plasma facing components for experimental fusion reactors, erosion loss induced by plasma disruption is regarded as a dominant factor which limits the lifetime of armor parts. During the plasma disruption the armor material will be subjected to a high thermal load which is in the range from several to several tens of MJ/m 2 for a duration of several milliseconds. A reliable data base on erosion loss of armor materials is required at these energy density levels. Disruption simulation experiments were performed at an energy density of around 5 MJ/m 2 for durations from 3 to 20 ms in an electron beam test facility. Special emphasis was laid on the erosion depth of carbon/carbon composites which have high thermal conductivity. The erosion depth was compared with that of numerical predictions and was found to be two to three times larger than the predicted value. The damaged surface was carefully characterized with scanning electron microscopy." @default.
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- W1971660189 date "1992-09-01" @default.
- W1971660189 modified "2023-09-26" @default.
- W1971660189 title "Experimental and analytical studies on thermal erosion of carbon-based materials with high thermal conductivity" @default.
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- W1971660189 doi "https://doi.org/10.1016/s0022-3115(09)80069-x" @default.
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