One-way shape-memory effect (SME) controlled by temperature and magnetic field in rapidly melt-quenched (RMQ) Heusler-alloy (Ni53Mn24Ga23) ribbons is experimentally studied. Two-way SME that results from training is demonstrated for submicron Ni53Mn24Ga23 samples. Reversible thermally and magnetically controlled bending of no less than 1.5% and deflection of no less than 2 mu m are reached for composite Ni53Mn24Ga23/Pt microactuators with sizes of 25 x 2.3 x 1.7 mu m(3) in the presence of magnetic field of mu(0) H = 8 T at an initial temperature of 63 degrees C.

Rapidly Quenched Ferromagnetic Ribbons with Shape Memory for Magnetically Controlled Micromechanic Devices

Albertini F;Fabbrici S;
2017

Abstract

One-way shape-memory effect (SME) controlled by temperature and magnetic field in rapidly melt-quenched (RMQ) Heusler-alloy (Ni53Mn24Ga23) ribbons is experimentally studied. Two-way SME that results from training is demonstrated for submicron Ni53Mn24Ga23 samples. Reversible thermally and magnetically controlled bending of no less than 1.5% and deflection of no less than 2 mu m are reached for composite Ni53Mn24Ga23/Pt microactuators with sizes of 25 x 2.3 x 1.7 mu m(3) in the presence of magnetic field of mu(0) H = 8 T at an initial temperature of 63 degrees C.
2017
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
Inglese
62
7
809
819
11
https://link.springer.com/article/10.1134/S106422691707004X
Sì, ma tipo non specificato
Ni2MnGa heusler alloys
magnetic shape memory alloys
12
info:eu-repo/semantics/article
262
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; Gon...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/342586
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