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 |
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container_title | Journal of superconductivity and novel magnetism |
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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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