Title :
Soft magnetic amorphous ribbons with high frequency Magnetoimpedance for sensors
Author :
Talaat, Ahmed ; Ipatov, Mihail ; Zhukova, Valentina ; Gonzalez, Jose ; Gonzalez-Legarreta, Lorena ; Prida, V.M. ; Hernando, Blanca ; Zhukov, Arcady
Author_Institution :
Dept. Mater. Phys., Univ. of the Basque Country, San Sebastian, Spain
Abstract :
Magnetoimpedance (MI) response of near-zero magnetostriction Co-based amorphous ribbons in as-cast (with four different wide dimension) state, and exhibiting a macroscopic uniaxial magnetic anisotropy induced by stress-annealing treatment (300 MPa applied tensile stress at different temperature i.e., 340, 360, and 400 °C, respectively, during 1 h) is investigated in the frequency range from 10 MHz up to 1000 MHz. Comparison among MI effect of as-cast state and stress-annealed ribbons is discussed. It is remarkable that a more spectacular and defined MI effect is observed in the stress-annealed ribbons owing to the presence of a macroscopic uniaxial transverse magnetic anisotropy developed with the stress-annealing treatment that enhances the transverse component of the magnetic susceptibility. The influence of a preceding stress relief before the stress-annealing process on the MI effect is also analyzed.
Keywords :
UHF measurement; amorphous magnetic materials; electric impedance measurement; magnetic anisotropy; magnetic annealing; magnetic sensors; magnetic susceptibility; magnetostriction; soft magnetic materials; stress analysis; MI effect; frequency 10 MHz to 1000 MHz; high frequency magnetoimpedance; macroscopic uniaxial transverse magnetic anisotropy; magnetic susceptibility; near-zero magnetostriction Co-based amorphous ribbon; pressure 300 MPa; sensor; soft magnetic amorphous ribbon; stress-annealing treatment; temperature 340 degC; temperature 360 degC; temperature 400 degC; tensile stress; time 1 h; Amorphous magnetic materials; Anisotropic magnetoresistance; Magnetostriction; Perpendicular magnetic anisotropy; Soft magnetic materials; Amorphous Materials; Magnetoimpedance Effect; Soft Magnetic Behaviour;
Conference_Titel :
Sensing Technology (ICST), 2013 Seventh International Conference on
Conference_Location :
Wellington
Print_ISBN :
978-1-4673-5220-8
DOI :
10.1109/ICSensT.2013.6727785