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- W3038789631 abstract "The interaction of radiation produced point defects with a dislocation microstructure at high temperature is of considerable interest and careful high voltage microscopy experiments can provide valuable insight into the mechanisms. Veyssière and Westmacott carried out in-situ experiments monitoring the partial dislocation climbs in Ni 3 Al induced by thermal vacancies as well as by Frenkel pairs produced during irradiation. 1 We report here the results of some preliminary experiments we performed on alumina (A1 2 O 3 ) single crystals with high dislocation densities to study the modification of the microstructure by electron irradiation at high temperature. The dislocation microstructures were produced by shock wave deformation using a high-velocity impact technique. The technique is capable of producing a very high density of defects consisting primarily of basal twins, and slips on the basal, pyramidal and rhombohedral planes in alumina. The dislocations are all of glide type, mostly forming shear bands. A typical microstructure prior to irradiation is shown in figure la." @default.
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- W3038789631 date "1997-08-01" @default.
- W3038789631 modified "2023-09-25" @default.
- W3038789631 title "In-Situ Observations of the Effect of Electron Irradiation on the Defect Microstructure of Alumina" @default.
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- W3038789631 doi "https://doi.org/10.1017/s1431927600009892" @default.
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