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Properties of crystalline engineering materials are directly related to their microstructure,
defined as the spatial distribution of elements, phases, defects, and
orientations. In view of the dramatically increased specific property material
requirements during the past decades, the efforts to understand how the granular
microstructure of polycrystals develops and how it can be influenced and predicted
became extremely important, since microstructure control is crucial, both for
improvement of materials performance and design of advanced materials with
tailored properties.
The topic of microstructural design of advanced materials was recently the focus
of a special symposium,1) in honor of Professor Dr rer. nat. Dr h.c. G |
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