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Magnetic and magnetoelastic properties of Fe-Si-B metallic fibers

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dc.contributor.author Atalay, S.
dc.contributor.author Squire, P.T.
dc.contributor.author Rudkowski, P.
dc.date.accessioned 2022-10-06T09:35:28Z
dc.date.available 2022-10-06T09:35:28Z
dc.date.issued 1996
dc.identifier.issn 00189464 (ISSN)
dc.identifier.uri http://hdl.handle.net/11616/62849
dc.description.abstract Amorphous metallic Fe78Si9B13 fibers, 50 μm in diameter, produced by the melt extraction method, have been studied in the as-quenched state and after furnace annealing at 455°C and 480°C for times between 0.5 min and 50 min. Measurements of the M-H loops and field dependence of Young's modulus have shown that they behave in a way very like that of amorphous wires. The minimum coercivity of 3 A/m is greater than that found in wires, and the minimum Young's modulus (∼0.45 times the saturation value) is greater. It is suggested that the core-shell domain model applies in the as-quenched state and that stress relief followed by surface crystallization dominate the anisotropy. © 1996 IEEE.
dc.source IEEE Transactions on Magnetics
dc.title Magnetic and magnetoelastic properties of Fe-Si-B metallic fibers


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