Strain And Dislocation Gradients From Diffraction Spatially Resolved Local Structure And Defects

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Strain And Dislocation Gradients From Diffraction: Spatially-resolved Local Structure And Defects

Strain And Dislocation Gradients From Diffraction: Spatially-resolved Local Structure And Defects
Author :
Publisher : World Scientific
Total Pages : 478
Release :
ISBN-10 : 9781908979643
ISBN-13 : 190897964X
Rating : 4/5 (64X Downloads)

Book Synopsis Strain And Dislocation Gradients From Diffraction: Spatially-resolved Local Structure And Defects by : Rozaliya I Barabash

Download or read book Strain And Dislocation Gradients From Diffraction: Spatially-resolved Local Structure And Defects written by Rozaliya I Barabash and published by World Scientific. This book was released on 2014-04-07 with total page 478 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book highlights emerging diffraction studies of strain and dislocation gradients with mesoscale resolution, which is currently a focus of research at laboratories around the world. While ensemble-average diffraction techniques are mature, grain and subgrain level measurements needed to understand real materials are just emerging. In order to understand the diffraction signature of different defects, it is necessary to understand the distortions created by the defects and the corresponding changes in the reciprocal space of the non-ideal crystals.Starting with a review of defect classifications based on their displacement fields, this book then provides connections between different dislocation arrangements, including geometrically necessary and statistically stored dislocations, and other common defects and the corresponding changes in the reciprocal space and diffraction patterns. Subsequent chapters provide an overview of microdiffraction techniques developed during the last decade to extract information about strain and dislocation gradients. X-ray microdiffraction is a particularly exciting application compared with alternative probes of local crystalline structure, orientation and defect density, because it is inherently non-destructive and penetrating.


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