Influence of heat-treatment on magnetic, magnetostrictive and piezomagnetic properties and structure of Fe64Ni10Nb3Cu1Si13B9 metallic glass

Z. Kaczkowski, G. Vlasak, P. Svec (Corresponding Author), P. Duhaj, Pekka Ruuskanen, J.M. Barandiarán, J. Gutiérrez, P. Minguez

Research output: Contribution to journalArticleScientificpeer-review

3 Citations (Scopus)

Abstract

The magnetic and piezomagnetic properties of the strip-shaped samples of the Fe64Ni10Nb3Cu1Si13B9 alloy were investigated after annealing in vacuum in the temperature range 100–600 °C. The coercivity was in the range from 5 to 50 A/m, the saturation induction about 1.25 T and magnetostriction (22–26)×10−6 (after annealing up to 480 °C). The magnetomechanical coupling coefficient reached the value of 0.62, and the elasticity moduli were changing from 70 to 205 GPa.
Original languageEnglish
Pages (from-to)1065-1068
JournalMaterials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
Volume375-377
DOIs
Publication statusPublished - 2004
MoE publication typeA1 Journal article-refereed

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Metallic glass
metallic glasses
heat treatment
Heat treatment
Annealing
magnetic properties
annealing
Magnetostriction
coupling coefficients
magnetostriction
Coercive force
coercivity
Elasticity
strip
induction
elastic properties
Vacuum
saturation
vacuum
Temperature

Keywords

  • elasticity moduli; heat-treatment; magnetic properties; magnetostriction; piezomagnetic properties

Cite this

Kaczkowski, Z. ; Vlasak, G. ; Svec, P. ; Duhaj, P. ; Ruuskanen, Pekka ; Barandiarán, J.M. ; Gutiérrez, J. ; Minguez, P. / Influence of heat-treatment on magnetic, magnetostrictive and piezomagnetic properties and structure of Fe64Ni10Nb3Cu1Si13B9 metallic glass. In: Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing. 2004 ; Vol. 375-377. pp. 1065-1068.
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abstract = "The magnetic and piezomagnetic properties of the strip-shaped samples of the Fe64Ni10Nb3Cu1Si13B9 alloy were investigated after annealing in vacuum in the temperature range 100–600 °C. The coercivity was in the range from 5 to 50 A/m, the saturation induction about 1.25 T and magnetostriction (22–26)×10−6 (after annealing up to 480 °C). The magnetomechanical coupling coefficient reached the value of 0.62, and the elasticity moduli were changing from 70 to 205 GPa.",
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Influence of heat-treatment on magnetic, magnetostrictive and piezomagnetic properties and structure of Fe64Ni10Nb3Cu1Si13B9 metallic glass. / Kaczkowski, Z.; Vlasak, G.; Svec, P. (Corresponding Author); Duhaj, P.; Ruuskanen, Pekka; Barandiarán, J.M.; Gutiérrez, J.; Minguez, P.

In: Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing, Vol. 375-377, 2004, p. 1065-1068.

Research output: Contribution to journalArticleScientificpeer-review

TY - JOUR

T1 - Influence of heat-treatment on magnetic, magnetostrictive and piezomagnetic properties and structure of Fe64Ni10Nb3Cu1Si13B9 metallic glass

AU - Kaczkowski, Z.

AU - Vlasak, G.

AU - Svec, P.

AU - Duhaj, P.

AU - Ruuskanen, Pekka

AU - Barandiarán, J.M.

AU - Gutiérrez, J.

AU - Minguez, P.

PY - 2004

Y1 - 2004

N2 - The magnetic and piezomagnetic properties of the strip-shaped samples of the Fe64Ni10Nb3Cu1Si13B9 alloy were investigated after annealing in vacuum in the temperature range 100–600 °C. The coercivity was in the range from 5 to 50 A/m, the saturation induction about 1.25 T and magnetostriction (22–26)×10−6 (after annealing up to 480 °C). The magnetomechanical coupling coefficient reached the value of 0.62, and the elasticity moduli were changing from 70 to 205 GPa.

AB - The magnetic and piezomagnetic properties of the strip-shaped samples of the Fe64Ni10Nb3Cu1Si13B9 alloy were investigated after annealing in vacuum in the temperature range 100–600 °C. The coercivity was in the range from 5 to 50 A/m, the saturation induction about 1.25 T and magnetostriction (22–26)×10−6 (after annealing up to 480 °C). The magnetomechanical coupling coefficient reached the value of 0.62, and the elasticity moduli were changing from 70 to 205 GPa.

KW - elasticity moduli; heat-treatment; magnetic properties; magnetostriction; piezomagnetic properties

U2 - 10.1016/j.msea.2003.10.082

DO - 10.1016/j.msea.2003.10.082

M3 - Article

VL - 375-377

SP - 1065

EP - 1068

JO - Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing

JF - Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing

SN - 0921-5093

ER -