Search Results - "Kamantsev, A.P."

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  1. 1

    Quasi-isothermal magnetocaloric effect in the DyAl2 alloy in magnetic field up to 14 T by Kuznetsov, A.S., Mashirov, A.V., Musabirov, I.I., Anikin, M.S., Mitsiuk, V.I., Koshkid’ko, Yu.S., Ćwik, J., Kamantsev, A.P., Kokorina, E.E., Kolesov, K.A., Shavrov, V.G.

    “…•Direct measures of ΔTad. and ΔQ for DyAl2 alloy in wide magnetic field range up to 14 T, were conducted.•Comparisons of results from direct and indirect…”
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    Journal Article
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    Magnetocaloric Effect and Magnetostriction in a [Ni.sup.49.3][Mn.sup.40.4][In.sub.10.3] Heusler Alloy in AC Magnetic Fields by Khanov, L.N, Batdalov, A.B, Mashirov, A.V, Kamantsev, A.P, Aliev, A.M

    Published in Physics of the solid state (01-06-2018)
    “…The magnetocaloric effect (MCE) and the magnetostriction in the [Ni.sub.49.3][Mn.sub.40.4][In.sub.10.3] Heusler alloy have been measured in ac magnetic fields…”
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    High-Speed Composite Microactuator Based on [Ti.sub.2]NiCu Alloy with Shape Memory Effect by Kuchin, D.S, Lega, P.V, Orlov, A.P, Frolov, A.V, Irzhak, A.V, Zhikharev, A.M, Kamantsev, A.P, Koledov, V.V, Shelyakov, A.V, Shavrov, V.G

    Published in Physics of the solid state (01-06-2018)
    “…Samples of microactuators are made of a bimorph composite of [Ti.sub.2]NiCu alloy with a thermoelastic martensitic transition and the shape memory effect, and…”
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  7. 7

    Thermal and magnetic hysteresis associated with martensitic and magnetic phase transformations in Ni52Mn25In16Co7 Heusler alloy by Madiligama, A.S.B., Ari-Gur, P., Ren, Y., Koledov, V.V., Dilmieva, E.T., Kamantsev, A.P., Mashirov, A.V., Shavrov, V.G., Gonzalez-Legarreta, L., Grande, B.H.

    “…•Ni52Mn25In16Co7 undergoes both structural (SPT) & magnetic phase transformations (MPT).•Both Temperature & magnetic field cause complete reversible…”
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  8. 8

    Delay Effect for Pulsed Excitation of Actuator Based on Rapidly Quenched [Ti.sub.2]NiCu Alloy with Thermoelastic Martensitic Transformation by Antonov, R.A, Kamantsev, A.P, Koledov, V.V, Koledov, L.V, Kuchin, D.S, Lega, P.V, Morozov), E.V, Orlov, A.P, Sivachenko), A.P, Shavrov, V.G, Shelyakov, A.V

    Published in Physics of the solid state (01-06-2018)
    “…The pulse response of the actuator based on rapidly quenched [Ti.sub.2]NiCu alloy with a thermoelastic martensitic transformation and the shape memory effect…”
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  9. 9

    Experimental simulation of a magnetic refrigeration cycle in high magnetic fields by Dilmieva, E. T., Kamantsev, A. P., Koledov, V. V., Mashirov, A. V., Shavrov, V. G., Cwik, J., Tereshina, I. S.

    Published in Physics of the solid state (2016)
    “…The complete magnetic refrigeration cycle has been simulated on a sample of gadolinium in magnetic fields of a Bitter coil magnet up to 12 T. The total change…”
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  10. 10

    Thermoelastic properties of micron-size actuators based on the NiCu/Pt composite with shape-memory effect by Mazaev, P.V, Koledov, V.V, Shavrov, V.G, Lega, P.V, Mashirov, A.V, Kamantsev, A.P, Kuchin, D.S, Kolesov, D.V, Yaminskii, I.V, Zakharov, D.I, Dikan, V.A, Irzhak, A.V

    “…Thermomechanical properties of microactuators with shape-memory effect (SME) based on the [Ti.sub.2]NiCu/Pt layered composite are analyzed. Atomic-force…”
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  11. 11

    Rapidly quenched ferromagnetic ribbons with shape memory for magnetically controlled micromechanic devices by Dilmieva, E. T., Irzhak, A. V., Kamantsev, A. P., Koledov, V. V., Shavrov, V. G., Grechishkin, R. M., Krasnoperov, E. P., Dikan, V. A., Albertini, F., Fabbrici, S., González-Legarreta, L., Hernando, B.

    “…One-way shape-memory effect (SME) controlled by temperature and magnetic field in rapidly melt-quenched (RMQ) Heusler-alloy (Ni 53 Mn 24 Ga 23 ) ribbons is…”
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    Journal Article