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Content Provider | IEEE Xplore Digital Library |
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Author | Marcin, J. Klinda, A. Svec, P. Praslicka, D. Blazek, J. Kovac, J. Svec, P. Skorvanek, I. |
Copyright Year | 1965 |
Abstract | Melt-spun Fe63 Co21 B15Cu ribbons were annealed at temperatures between 573 K and 623 K in longitudinal and transverse-magnetic field in order to prepare a representative set of relaxed amorphous and partially crystallized samples having uniaxial anisotropy. The optimal magnetic characteristics for the relaxation sensor were obtained after longitudinal field annealing for 1 h at 593 K, which corresponds to early crystallization stage in the heat treated amorphous material. The magnetic flux density after such heat treatment reaches 1.83 T and the value of coercive field is 4.2 A/m. The corresponding relaxation characteristics obtained by using ferroprobe designed as a flat, double-layer coil tightly surrounding the ribbon core with the dimensions of 60 × 3 mm show good prospects for the potential use of these alloys as core materials in the relax-type fluxgate magnetometers mainly due to the extending of their linear measuring range as compared to the currently used commercial materials while keeping the similar sensitivity. |
Sponsorship | IEEE Magnetics Society |
Starting Page | 416 |
Ending Page | 419 |
Page Count | 4 |
File Size | 500364 |
File Format | |
ISSN | 00189464 |
Volume Number | 46 |
Issue Number | 2 |
Language | English |
Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Publisher Date | 2010-02-01 |
Publisher Place | U.S.A. |
Access Restriction | One Nation One Subscription (ONOS) |
Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subject Keyword | Magnetic flux density Magnetometers Magnetic materials Annealing Amorphous materials Crystallization Magnetic cores Iron Temperature sensors Anisotropic magnetoresistance magnetic annealing Alloys amorphous magnetic materials induced anisotropy magnetic sensors |
Content Type | Text |
Resource Type | Article |
Subject | Electronic, Optical and Magnetic Materials Electrical and Electronic Engineering |
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