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Thermal and magnetic characterisation of (Co0.402Fe0.201Ni0.067B0.227Si0.053Nb0.05)100–xCux bulk metallic glasses

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Akademik Birimler

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Şarlar, Kağan
Küçük, İlker

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Taylor & Francis

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In this work, Co-based (Co0.402Fe0.201Ni0.067B0.227Si0.053Nb0.05)(100-x) Cu-x bulk glassy alloys (BMG) with 2 mm diameters were formed by suctioncasting method and effect of Cu in this system's thermal stability, glass forming ability and magnetic properties were also investigated. The curves of thermal analysis, obtained using differential scanning calorimetry, show that (Co0.402Fe0.201Ni0.067 B0.227Si0.053Nb0.05)(100-x) Cu-x (x = 0-2) has supercooled liquid region (Delta T-x) of about 45 K, and reduced glass transition temperature (T-g/T-l) lies in the range from 0.663 to 0.678. The saturation magnetisation (J(s)) and coercivity (H-c) for ascast BMG were in the range of 0.46 T-0.65 T and 13 A/m, respectively.

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Materials science, Metallurgy & metallurgical engineering, Physics, Bulk metallic glasses (BMGs), Glass forming ability (GFA), Magnetic materials, Suction casting, Supercooled liquid, Forming ability, Fe, Elements, Alloys, Casting, Differential scanning calorimetry, Glass, Glass transition, Magnetic materials, Magnetism, Nickel, Silicon, Supercooling, Thermoanalysis, As-cast, Bulk glassy alloy, Bulk metallic glass, Co based, Glass-forming ability, Reduced glass transition temperature, Suction casting, Supercooled liquid region

Alıntı

Şarlar, K. ve Küçük, İ. (2017). ''Thermal and magnetic characterisation of (Co0.402Fe0.201Ni0.067B0.227Si0.053Nb0.05)100–xCux bulk metallic glasses''. Philosophical Magazine, 97(7), 489-496.

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