Magnetostrictive composites

Metal treatment – Process of modifying or maintaining internal physical... – Magnetic materials

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148101, H01F 103

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059935650

ABSTRACT:
Composite bodies of magnetostrictive materials of the type RE-Fe.sub.2, where RE is one or more of the rare earth elements, preferably samarium or terbium, can be suitably hot pressed with a matrix metal selected from the group consisting of aluminum, copper, iron, magnesium or nickel to form durable and machinable magnetostrictive composites still displaying appreciable magnetostrictive strains.

REFERENCES:
patent: 4152178 (1979-05-01), Malekzadeh et al.
patent: 4378258 (1983-03-01), Clark et al.
JP 06256912 published Sep. 13, 1994, "Patent Abstracts of Japan," vol. 18, No. 662 (C-1287), Dec. 14, 1994.
JP 03269228 published Nov. 29, 1991, "Patent Abstracts of Japan," vol. 16, No. 80 (P-1318), Feb. 26, 1992.
Pinkerton et al, "Magnetostrictive SmFe.sub.2 /Metal Composites," Applied Physics Letters, vol. 70, No. 19, May 12, 1997, pp. 2601-2603.
Garshelis, "A Torque Transducer Utilizing a Circularly Polarized Ring," IEEE Transactions on Magnetics, vol. 28, No. 5, Sep. 1992, pp. 2202-2204.
Peters, "Production and Evaluation of REFe.sub.2 -Nickel Composite Magnetostrictive Materials," Final Report to Naval Electronic Systems Command Contract No. N00039-77-0108, Jan. 1979.
Peters et al, "Nickel Composite Magnetostrictive Material Research for Ultrasonic Transducer," Final Report to Naval Electronic Systems Command Contract No. N00039-76-C-0017, Jan. 1977.
Sandlund et al, "Magnetostriction, Elastic Moduli, and Coupling Factors of Composite Terfenol-D," Journal of Applied Physics, vol. 75, No. 10, May 15, 1994, pp. 5656-5658.

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