Electron Backscatter Diffraction in Materials Science

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March 1, 2022 | History

Electron Backscatter Diffraction in Materials Science

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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.

Publish Date
Language
English
Pages
339

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Previews available in: English

Edition Availability
Cover of: Electron Backscatter Diffraction in Materials Science
Electron Backscatter Diffraction in Materials Science
2000
electronic resource / in English

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Book Details


Table of Contents

1 The Development of Automated Diffraction in Scanning and Transmission Electron Microscopy
2 Theoretical Framework for Electron Backscatter Diffraction
3 Representations of Texture in Orientation Space
4 Rodrigues-Frank Representations of Crystallographic Texture
5 Fundamentals of Automated EBSD
6 Studies on the Accuracy of Electron Backscatter Diffraction Measurements
7 Phase Identification Using Electron Backscatter Diffraction in the Scanning Electron Microscope
8 Three-Dimensional Orientation Imaging
9 Automated Electron Backscatter Diffraction: Present State and Prospects
10 EBSD: Buying a System
11 Hardware and Software Optimization for Orientation Mapping and Phase Identification
12 An Automated EBSD Acquistion and Processing System
13 Advanced Software Capabilities for Automated EBSD
14 Strategies for Analyzing EBSD Datasets
15 Structure-Property Relations: EBSD-Based Material-Sensitive Design
16 Use of EBSD Data in Mesoscale Numerical Analyses
17 Characterization of Deformed Microstructures
18 Anisotropic Plasticity Modeling Incorporating EBSD Characterization of Tantalum And Zirconium
19 Measuring Strains Using Electron Backscatter Diffraction
20 Mapping Residual Plastic Strain in Materials Using Electron Backscatter Diffraction
21 EBSD Contra Tem Characterization of a Deformed Aluminum Single Crystal
22 Continuous Recrystallization and Grain Boundaries in a Superplastic Aluminum Alloy
23 Analysis of Facets and Other Surfaces Using Electron Backscatter Diffraction
24 EBSD of Ceramic Materials
25 Grain Boundary Character Based Design of Polycrystalline High Temperature Superconducting Wires.

Classifications

Dewey Decimal Class
620.11
Library of Congress
TA404.6, TA418.5-.84

The Physical Object

Format
[electronic resource] /
Pagination
XVI, 339 p.
Number of pages
339

ID Numbers

Open Library
OL27034983M
Internet Archive
electronbackscat00ding
ISBN 13
9781475732054

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Download catalog record: RDF / JSON / OPDS | Wikipedia citation
March 1, 2022 Edited by ImportBot import existing book
June 30, 2019 Created by MARC Bot Imported from Internet Archive item record