Trilayer GMI sensors based on fast stress-annealing of FeSiBCuNb ribbons

Sensors and Actuators A: Physical(2008)

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摘要
Magneto-elastic properties and creep-induced anisotropy dependence of giant magneto-impedance (GMI) behaviour in nanocrystalline Fe75Si15B6Cu1Nb3/Cu/Fe75Si15B6Cu1Nb3 sandwich structures are reported. Magnetic ribbons are submitted to stress (5–175MPa) and rapid annealing (a few tens of a second) at temperatures between 500 and 800°C. In contrast with amorphous systems, transfer curves of nanocrystalline GMI sensors can be easily controlled by creep-induced anisotropy. High values of GMI ratio (a few hundreds of percent) are obtained in the radio frequency range. Nanotesla range is detectable with a sensitivity of 4500V/A/T up to 1kHz. These performances are interesting for magnetic sensors in non-destructive testing of embedded cracks, ac/dc space magnetometers, molecular recognition systems and selective detection applications.
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关键词
Magneto-impedance effect,Stress-annealing,Magnetic anisotropy,Magnetic sensors
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