PREDICTION OF MAGNETOCRYSTALLINE ANISOTROPY OF POLYCRYSTALLINE MATERIALS WITH GENERALIZED VECTOR METHOD
ZUO Liang;WANG Yandong;XU Jiazhen;LIANG Zhide Northeast University of Technology; Shenyang Department of Materials Science and Engineering;Northeast University of Technology; Shenyang 110006
Cite this article:
ZUO Liang;WANG Yandong;XU Jiazhen;LIANG Zhide Northeast University of Technology; Shenyang Department of Materials Science and Engineering;Northeast University of Technology; Shenyang 110006. PREDICTION OF MAGNETOCRYSTALLINE ANISOTROPY OF POLYCRYSTALLINE MATERIALS WITH GENERALIZED VECTOR METHOD. Acta Metall Sin, 1990, 26(4): 155-157.
Abstract The orientation distribution function of the crystallites in a cold-rolled W20non-oriented Si steel sheet was determined for the layers along surface, 1/4 depth and centre, res-pectively, with the generalized vector method. The angular variation of magnetic torque in thesheet plane was quantitatively calculated by extending the theory of magnetic anisotropy to thepolycrystalline materials with no sample symmetry. The values predicted theoretically are wellfit to the magnetic torque plot measured.
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