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Quantitative analysis of the fibre texture of zirconium by time‐of‐flight neutron diffraction
Author(s) -
Feldmann K.,
Betzl M.,
Walther K.,
Matz W.
Publication year - 1981
Publication title -
kristall und technik
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.377
H-Index - 64
eISSN - 1521-4079
pISSN - 0023-4753
DOI - 10.1002/crat.19810161013
Subject(s) - time of flight , materials science , zirconium , neutron diffraction , texture (cosmology) , diffraction , pole figure , deformation (meteorology) , neutron , orientation (vector space) , spectral line , composite material , optics , crystallography , physics , geometry , nuclear physics , chemistry , metallurgy , mathematics , astronomy , computer science , image (mathematics) , artificial intelligence
Quantitative analysis of the fibre texture of zirconium has been performed by the neutron time‐of‐flight method. On the pulsed reactor IBR‐30 16 diffraction spectra were measured for each of the three deformation states of the sample. Pole figures and inverse pole figures have been determined from the experimental spectra for all deformation states investigated. The development of preferred orientation of the (10 1 0) lattice plane in the direction of the fibre axis in dependence on increasing deformation has been found.

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