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- W2060704436 abstract "Abstract During irradiation of Cu-3.4 at% Be solid solutions with 14 MeV ions at temperatures of 575–750 K, high concentrations of CuBe precipitate platelets formed in the 3 μm deep layer traversed by the energetic ions. Because of the non-linear nature of ion energy loss, both the displacement-damage dose and the dose-rate increased by about an order of magnitude between the free surface and the peak damage depth (2.3 μm). To determine the effects of this damage distribution on the precipitate distribution, irradiated specimens were thinned in a plane parallel to the path of the incident ions, and the depth dependence of the precipitate characteristics was studied quantitatively by transmission electron microscopy (TEM). Cross-sectional TEM micrographs of precipitation in specimens irradiated at 575–750 K are presented. Depth profiles of precipitate size and number density are compared with depth profiles of the calculated displacement damage. In all cases, the precipitate characteristics varied much less with depth than did the displacement damage. At lower temperatures, precipitate size increased dramatically near the calculated end of range (EOR) and some precipitates formed 0.5–0.7 μm beyond the EOR. At higher temperatures, no precipitates formed beyond the EOR. Precipitate crystallographic characteristics did not vary with temperature or with depth." @default.
- W2060704436 created "2016-06-24" @default.
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- W2060704436 date "1985-04-01" @default.
- W2060704436 modified "2023-09-27" @default.
- W2060704436 title "Precipitation in Cu-3.4 at% be solid solution during heavy-ion irradiation: II. Depth dependence through the ion range" @default.
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- W2060704436 doi "https://doi.org/10.1016/0022-3115(85)90457-x" @default.
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