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期刊论文

CALCULATION OF MISORIENTATION DISTRIBUTION BETWEEN RECRYSTALLIZED GRAINS AND DEFORMED MATRIX

毛卫民G. Zhu W. Mao and Y. Yu

Scripta mater. 42(2000)37-41,-0001,():

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摘要/描述

Misorientation between neighboring grains has significant influence on migration of grain boundaries during annealing of cold worked polycrystalline materials (1,2). The migration of grain boundaries could lead to formation of unique textures and improvement of materials properties (3). Therefore,characterization of the misorientation distributions is crucial for understanding underlying mechanisms.Based on group theory and the assumption of random orientation distribution, MacKenzie (4,5)calculated the distribution of misorientation angles and rotation axes in polycrystalline materials withcubic symmetry. A Similar study was reported by Morawiec (6) for materials with other crystalsymmetries. Recently, the EBSD (Electron Back Scattering Diffraction) technique was successfullyutilized to determine misorientation distributions between grains in either randomly or preferentiallyoriented polycrystalline materials (1-3). However, theoretical characterization of the misorientationdistribution in materials with strong texture remains a challenge. The study of textured materials wouldhave practical impact in industry, especially in the case of grain boundary migration during recrystallizationof heavily deformed matrix. In the present work, a new method is presented for calculating themisorientation distribution in textured polycrystalline materials.

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