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Titlebook: Electron Backscatter Diffraction in Materials Science; Adam J. Schwartz,Mukul Kumar,David P. Field Book 2009Latest edition Springer-Verlag

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发表于 2025-3-30 11:02:25 | 显示全部楼层
Hidden Champions of the Czech Republic,stals by EBSD. In this chapter, we describe the application of EBSD to the measurement of internal interface planes by application of both serial sectioning and also a stereological technique known as the “five-parameter analysis.”
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Quo Vadis Globalia: Population and Economy and angular distribution of shifts allows the strain and rotation tensor to be determined. Pattern shifts at a resolution of ±0.05 pixels, or in some cases even better, have been reported, which corresponds to a sensitivity of ∼±10. in the components of the strain and rotation tensor.
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Present State of Electron Backscatter Diffraction and Prospective Developments,dividual grain orientations, local texture, point-to-point orientation correlations, and phase identification and distributions to be determined routinely on the surfaces of bulk polycrystals. The application has experienced rapid acceptance in metallurgical, materials, and geophysical laboratories
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Dynamical Simulation of Electron Backscatter Diffraction Patterns,l the physical processes that lead to the formation of the characteristic diffraction features in the form of Kikuchi bands and lines. Whereas the purely geometrical relations in the observed networks of bands and lines can be explained by mapping out Bragg’s law for the relevant reflecting lattice
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Representations of Texture,properties. Electron backscatter diffraction (EBSD) dramatically enhances our abilities in this regard, by providing extensive crystallographic orientation information of a given two-dimensional section of a microstructure. As this technique has been developed and combined with chemical analysis and
发表于 2025-3-31 06:41:44 | 显示全部楼层
Application of Electron Backscatter Diffraction to Phase Identification,sed to design engineering components and products. Phase identification and characterization are therefore critical to the development and use of practical materials. In this chapter, we will focus on the application of electron backscatter diffraction (EBSD) to phase identification.
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3D Reconstruction of Digital Microstructures,’ response. Often, the use of simple average quantities such as “grain size” is inadequate; instead one may need to consider the possibility that the full three-dimensional (3D) microstructure is important. Calculations by hand being self-evidently impracticable, computers must be used, and thus a d
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Direct 3D Simulation of Plastic Flow from EBSD Data,ll aspects of material behavior, this involves a model for the material’s response, and considerable uncertainty in the predictions arises from uncertainties in both model form and model parameters. Classical crystal viscoplasticity is often used to assess the plastic flow behavior of polycrystallin
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First-Order Microstructure Sensitive Design Based on Volume Fractions and Elementary Bounds,k for establishing invertible linkages between the mesoscale internal structure of the material and the macroscale properties exhibited by the material. It is noted that the current practice in engineering design does not pay adequate attention to the internal structure of the material as a continuo
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