TY - JOUR
T1 - An enhanced electrical steel sheet model integrating the effects of rotating magnetic properties and DC-biased field
AU - Shi, Minxia
AU - Rehman, Habibur
AU - Qiu, Aici
AU - Li, Junhao
N1 - Publisher Copyright:
© 2019 The Japan Institute of Metals and Materials
PY - 2019
Y1 - 2019
N2 - This paper enhances the Enokizono and Soda (E&S) two dimensional rotating magnetic properties model by integrating the impact of DC-biased field in the E&S model. An experimental set up is developed to apply the DC voltage excitation superimposed on a constant AC excitation, and to investigate their collective impact on the testing sample of electrical steel sheet. The magnetic properties B and H of the testing sample are measured under the influence of rotating and DC-biased magnetic fields. Based on the measurement results of B and H, the E&S model is enhanced by adding rotating reluctivity coefficient (vrk), rotating hysteresis coefficient (vhk), and DC reluctivity coefficient (v0k) to integrate the effect of DC-biased field with rotating magnetic field. Rotating and DC reluctivity coefficients in conjunction with rotating hysteresis coefficient are obtained by Fourier series expansion of experimental B and H waveforms. The accuracy of an enhanced model under DC-biased field is proved by the close agreement between experimental hysteresis loops of electrical steel sheet and the ones obtained by the proposed model.
AB - This paper enhances the Enokizono and Soda (E&S) two dimensional rotating magnetic properties model by integrating the impact of DC-biased field in the E&S model. An experimental set up is developed to apply the DC voltage excitation superimposed on a constant AC excitation, and to investigate their collective impact on the testing sample of electrical steel sheet. The magnetic properties B and H of the testing sample are measured under the influence of rotating and DC-biased magnetic fields. Based on the measurement results of B and H, the E&S model is enhanced by adding rotating reluctivity coefficient (vrk), rotating hysteresis coefficient (vhk), and DC reluctivity coefficient (v0k) to integrate the effect of DC-biased field with rotating magnetic field. Rotating and DC reluctivity coefficients in conjunction with rotating hysteresis coefficient are obtained by Fourier series expansion of experimental B and H waveforms. The accuracy of an enhanced model under DC-biased field is proved by the close agreement between experimental hysteresis loops of electrical steel sheet and the ones obtained by the proposed model.
KW - DC-biased field
KW - Electrical steel sheet
KW - Rotating magnetic properties
KW - Two dimensional magnetic model
UR - https://www.scopus.com/pages/publications/85069687838
U2 - 10.2320/matertrans.M2019002
DO - 10.2320/matertrans.M2019002
M3 - 文章
AN - SCOPUS:85069687838
SN - 1345-9678
VL - 60
SP - 1577
EP - 1582
JO - Materials Transactions
JF - Materials Transactions
IS - 8
ER -