Electron Backscatter Diffraction in Materials Science
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Author
Contributions
- Kumar, Mukul, editor - Contributor
- Adams, B. L. (Brent L.), editor - Contributor
- SpringerLink (Online service) - Contributor
Publication
2000 - , United States
Language
English
Word Count
84,750 words, Guess
Page Count
339 pages
Physical Format
Electronic resource
Identifiers
- Internet Archiveelectronbackscat00ding
- ISBN-139781475732054
- ISBN-101475732058
- Better World Books9781475732054
- Open LibraryOL27034983M
Classifications
- DDC620.11
- LCCTA404.6
- LCCTA418.5-.84
Description
Electron backscatter diffraction (EBSD), when employed as an additional characterization technique to a scanning electron microscope (SEM), enables individual grain orientations, local texture, point-to-point orientation correlations, and phase identification and distributions to be determined routinely on the surfaces of bulk polycrystalline materials. The application has experienced rapid acceptance in metallurgical, materials, and geophysical laboratories within the past decade due to the wide availability of SEMs, the ease of sample preparation from the bulk, the high speed of data acquisition, and the access to complimentary information about the microstructure on a submicron scale. This entirely new second edition describes the complete EBSD technique, from the experimental set-up, representations of textures, and dynamical simulation, to energy-filtered, spherical, and 3-D EBSD, to phase identification, in situ experiments, strain mapping, and grain boundary networks, to the design and modeling of materials microstructures. Numerous application examples including the analysis of deformation microstructure, dynamic deformation and damage, and EBSD studies in the earth sciences provide details of this powerful materials characterization technique.
Subjects
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