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Mechanical Alloying for Fabrication of Fe50Ni30B20 Amorphous Alloys Powder

Ge Wang, Zhi Gang Chao, Yu Ying Zhu, Dong Hu, Xing Hua Wang, Qiang Li

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Abstract

Fe50Ni30B20 amorphous Alloys powder was prepared by mechanical alloying (MA) with a high-energy planetary ball mill. The composition and non-crystallization changing process of the as-milled powder were studied by X-ray diffractometry (XRD). The microstructure and shape of the amorphous alloys powder was observed by scanning electron microscope (SEM). Thermodynamic properties and crystallization kinetics behavior of the as-milled amorphous alloys powder were measured by differential scanning calorimeter (DSC).

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Fe50Ni30B20 amorphous Alloys powder was prepared by mechanical alloying (MA) with a high-energy planetary ball mill. The composition and non-crystallization changing process of the as-milled powder were studied by X-ray diffractometry (XRD). The microstructure and shape of the amorphous alloys powder was observed by scanning electron microscope (SEM). Thermodynamic properties and crystallization kinetics behavior of the as-milled amorphous alloys powder were measured by differential scanning calorimeter (DSC).

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Available abstract

Fe50Ni30B20 amorphous Alloys powder was prepared by mechanical alloying (MA) with a high-energy planetary ball mill. The composition and non-crystallization changing process of the as-milled powder were studied by X-ray diffractometry (XRD). The microstructure and shape of the amorphous alloys powder was observed by scanning electron microscope (SEM). Thermodynamic properties and crystallization kinetics behavior of the as-milled amorphous alloys powder were measured by differential scanning calorimeter (DSC).

Key concepts: Differential scanning calorimetry, Materials science, Ball mill, Amorphous solid, Scanning electron microscope, Crystallization, Microstructure, Metallurgy

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