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Magnetic properties of Fe73.5Cu1Nb3(SixB1-x)22.5 (x = 0.4-0.8) alloy ribbons quenched from different melt temperaturesPI, W. K; LIM, S. H; NOH, T. H et al.IEEE transactions on magnetics. 1993, Vol 29, Num 6, pp 2676-2678, issn 0018-9464, 1Conference Paper

Distribution of thermodynamic processes controlling (nano)crystallization of iron-based metallic glassesKRISTIAKOVA, K; SVEC, P.Scripta materialia. 2001, Vol 44, Num 8-9, pp 1275-1279, issn 1359-6462Conference Paper

High electronic excitation-induced crystallization in Fe73.5Cu1Nb3Si13.5B9 amorphous alloy: I. Irradiation with swift heavy monoatomic projectilesRIZZA, G; DUNLOP, A; JASKIEROWICZ, G et al.Journal of physics. Condensed matter (Print). 2004, Vol 16, Num 9, pp 1547-1561, issn 0953-8984, 15 p.Article

Gapless Fe-based metallic cores with low permeabilityFUKUNAGA, H; TANAKA, H; YANAI, T et al.Journal of magnetism and magnetic materials. 2003, Vol 254-55, pp 519-521, issn 0304-8853, 3 p.Conference Paper

Advantages of softmagnetic nanocrystalline materials for modern electronic applicationsPETZOLD, J.Journal of magnetism and magnetic materials. 2002, Vol 242-45, pp 84-89, issn 0304-8853, 1Conference Paper

Nanocrystalline powder cores for high frequency applicationsIQBAL, Y; NAVIES, H. A; GIBBS, M. R. J et al.Journal of magnetism and magnetic materials. 2002, Vol 242-45, pp 282-284, issn 0304-8853, 1Conference Paper

Magnetic anisotropy distribution and giant magnetoimpedance in Fe73.5SixB22.5-xCu1Nb3 (x = 9, 16) alloysFRANCO, V; CONDE, A.Materials letters (General ed.). 2001, Vol 49, Num 5, pp 256-261, issn 0167-577XArticle

Magnetic softening of nanocrystalline Fe74Cu1Nb3Si12B1c alloy obtained by two-step heat treatmentBŁACHOWICZ, A; ZBROSZCZYK, J; OLSZEWSKI, J et al.Journal of magnetism and magnetic materials. 2000, Vol 215-16, pp 422-424, issn 0304-8853Conference Paper

Direct measurement of magnetostriction of rapidly quenched thin ribbonsVLASAK, G.Journal of magnetism and magnetic materials. 2000, Vol 215-16, pp 479-481, issn 0304-8853Conference Paper

Multicomponent mechanical alloying of Fe-Cu-Nb-Si-BYANG, J. Y; WU, J. S; ZHANG, T. J et al.Journal of alloys and compounds. 1998, Vol 265, pp 269-272, issn 0925-8388Article

Internal friction and elastic properties of nanocrystalline Fe-Si-Nb-Cu alloyKOBELEV, N. P; SOIFER, YA. M.Journal de physique. IV. 1996, Vol 6, Num 8, pp C8.811-C8.814, issn 1155-4339Conference Paper

Magnetostriction and its temperature dependence in FeCuNbSiB nanocrystalline alloyTWAROWSKI, K; KUZMINSKI, M; SLAWSKA-WANIEWSKA, A et al.Journal of magnetism and magnetic materials. 1995, Vol 150, Num 1, pp 85-92, issn 0304-8853Article

Magnetic and electron transport study of nanocrystalline alloysPEKAŁA, K; JASKIEWICZ, P; PEKAŁA, M et al.Journal of magnetism and magnetic materials. 1995, Vol 140-44, Num 1, pp 419-420, issn 0304-8853Conference Paper

Magnetomechanical coupling in the Fe73.5Cu1Nb3Si15.5B7 metallic glass after annealings in vacuum at 300 to 560°CKACZKOWSKI, Z; LANOTTE, L; MÜLLER, M et al.Journal of magnetism and magnetic materials. 1995, Vol 140-44, Num 1, pp 325-326, issn 0304-8853Conference Paper

Magnetostriction of Fe73.5Cu1Nb3Si15.5B7 nanocrystalline alloyTWAROWSKI, K; KUZMINSKI, M; SLAWSKA-WANIEWSKA, A et al.Journal of magnetism and magnetic materials. 1995, Vol 140-44, Num 1, pp 449-450, issn 0304-8853Conference Paper

Mössbauer studies of Fe73.5Cu1Nb3Si13.5B9 in different stages of annealing with and without applied magnetic radio frequency fieldsGRAF, T; KOPCEWICZ, M; HESSE, J et al.Journal of magnetism and magnetic materials. 1995, Vol 140-44, Num 1, pp 423-424, issn 0304-8853Conference Paper

The influence of boron content on the Hall effect and structure of annealed Fe73.5Cu1Nb3Si22.5-xBx (5≤x≤13) alloysMATTA, P; SOVAK, P; KONC, M et al.Journal of magnetism and magnetic materials. 1995, Vol 140-44, Num 1, pp 329-330, issn 0304-8853Conference Paper

Evolution of the domain structure in FeCuNbSiB amorphous alloy annealed below and above its nanocrystallization temperatureVERTESY, Z; KISDI-KOSZO, E; KUZMINSKI, M et al.Physica status solidi. A. Applied research. 1994, Vol 143, Num 1, pp 149-155, issn 0031-8965Article

Structure of the amorphous phase during crystallization of Fe73.5Cu1Nb3Si13.5B9 alloyYANG HUISHENG; TU GUOCHAO; XIONG XIAOTAO et al.Journal of magnetism and magnetic materials. 1994, Vol 138, Num 1-2, pp 94-98, issn 0304-8853Article

Coexistence of various magnetic phases in nanocrystalline Fe-based metallic glassesLACHOWICZ, H. K; SLAWSKA-WANIEWSKA, A.Journal of magnetism and magnetic materials. 1994, Vol 133, Num 1-3, pp 238-242, issn 0304-8853Conference Paper

Attempt at crystallization of a nanocrystalline structure in thin films of Fe73.5Cu1Nb3Si13.5B9 alloyRATAJCZAK, H; GOSCIANSKA, I; SOVAK, P et al.Physica status solidi. A. Applied research. 1993, Vol 136, Num 1, pp 119-124, issn 0031-8965Article

A relax type wide range field sensor using FinemetBUTVIN, P; PRASLICKA, D; BLAZEK, J et al.Sensors and actuators. A, Physical. 2003, Vol 106, Num 1-3, pp 22-25, issn 0924-4247, 4 p.Conference Paper

Influence of magnetic annealing on the Barkhausen effect in Fe73.5Cu1Nb3Si13.5B9 alloySHULIKA, V. V; LAVRENT'EV, A. G; POTAPOV, A. P et al.Physics of metals and metallography. 2002, Vol 93, Num 6, pp 549-551, issn 0031-918XArticle

Nanocrystalline alloy Fe73.5Cu1Nb3Si13.5B9, its structure and magnetic properties: II. Thermal stability of induced magnetic anisotropyLUKSHINA, V. A; DMITRIEVA, N. V; NOSKOVA, N. I et al.Physics of metals and metallography. 2002, Vol 93, Num 6, pp 536-543, issn 0031-918XArticle

Analysis of the nanocrystallization of Finemet type alloy by temperature-modulated differential scanning calorimetryMARZO, F. F; PIERNA, A. R; ALTUBE, A et al.Journal of non-crystalline solids. 2001, Vol 287, Num 1-3, pp 349-354, issn 0022-3093Conference Paper

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