Role of the coincidence site lattice in grain boundary by V. Randle

By V. Randle

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3 Orientation imaging micrograph (OIM) featuring an intergranular crack in Inconel 750. Random high angle boundaries are delineated in black and 2 3 boundaries in grey. In the original OIM, 23s, 29s and 227s were coloured red, green and yellow respectively. P. ) From Bicrystals to Polycrystals 39 computer in real time. The latest generation of systems features automatic pattern indexing, which can be coupled with stage or beam control on the microscope. The operator can either preselect the coordinates of sampling points, or sample orientations at predetermined steps.

Some entries in this list also appear in the numbered references. 8 respectively. 1 gives an overview of the materials which have been the subject of CSL investigations. 1 Distribution of CSL investigations on polycrystals according to material type. A1+, C u + , N i + refer to alloys of these elements. Coincidence Site Lattice Data Overview and Analysis 43 followed by a group of body-centered cubics (bcc), and a category of review articles which by definition includes several investigations, often on a range of materials.

9b). 9b was therefore restricted to cases where these figures were available. The amount of 23s in the fee categories correlates to a first-order approximation with the stacking fault energy. 1 which lists values of stacking fault energy and average proportions of twins collated in the present analysis. Turning to the 2 l category, proportions of 2 l s are most significant for bcc materials, and aluminium. This can be explained by the fact that bcc materials and aluminium often exhibit strong textures, and furthermore annealing twinning is not expected.

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