Glass Forming Ability and Magnetic Properties of Fe36Ni36B19.2Si4.8Nb4−x M x (M=Cu, Zr, Ti, Y, Pt) Bulk Glassy Alloys Fabricated by Suction Casting

In this study, the effects of Cu, Zr, Ti, Y, Pt substitution for Nb additions on the stability and magnetic properties of Fe-Ni-based bulk metallic glass (BMG) alloys fabricated by the suction casting method are investigated. The saturation magnetization (J s) and coercivity (H c) for as-cast Fe36Ni...

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Veröffentlicht in:Journal of superconductivity and novel magnetism 2013-05, Vol.26 (5), p.1683-1685
Hauptverfasser: Engin Kırımlı, Handan, Sarlar, Kagan, Oguz Konuk, A., Duman, Nagehan, Vedat Akdeniz, M., Kucuk, Ilker
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container_end_page 1685
container_issue 5
container_start_page 1683
container_title Journal of superconductivity and novel magnetism
container_volume 26
creator Engin Kırımlı, Handan
Sarlar, Kagan
Oguz Konuk, A.
Duman, Nagehan
Vedat Akdeniz, M.
Kucuk, Ilker
description In this study, the effects of Cu, Zr, Ti, Y, Pt substitution for Nb additions on the stability and magnetic properties of Fe-Ni-based bulk metallic glass (BMG) alloys fabricated by the suction casting method are investigated. The saturation magnetization (J s) and coercivity (H c) for as-cast Fe36Ni36B19.2Si4.8Nb4?x M x (M=Cu, Ti) BMG alloys were in the range of 0.51 Ta0.55 T and 76a779 A/m, respectively. Differential scanning calorimetry curves show that the Fe36Ni36B19.2Si4.8Nb4?x M x (M=Cu, Ti) bulk metallic glasses have a supercooled liquid region for Cu at 44 K and for Ti at 39 K.
doi_str_mv 10.1007/s10948-012-1998-y
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subjects Alloys
Amorphous materials
Coercive force
Copper
Magnetic properties
Metallic glasses
Platinum base alloys
Titanium
title Glass Forming Ability and Magnetic Properties of Fe36Ni36B19.2Si4.8Nb4−x M x (M=Cu, Zr, Ti, Y, Pt) Bulk Glassy Alloys Fabricated by Suction Casting
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