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Solid state amorphization of Mg-Zn-Ca system via mechanical alloying and characterization
Authors:Bhaskar Manne  Srikanth Bontha  M.R. Ramesh  Munishamaiah Krishna  Vamsi Krishna Balla
Affiliation:1. Department of Mechanical Engineering, CMR Institute of Technology, Bengaluru 560037, India;2. Department of Mechanical Engineering, National Institute of Technology Karnataka, Surathkal, Mangalore 575025, India;3. Department of Mechanical Engineering, R.V. College of Engineering, Bengaluru 560059, India;4. Bioceramics and Coating Division, CSIR-Cental Glass and Ceramic Research Institute, Kolkata 700032, India
Abstract:
Magnesium based bulk metallic glasses have attracted significant attention of researchers due to better mechanical and corrosion properties when compared to their crystalline counterparts especially for biomedical applications. Scaling up the part size and production volumes of such materials through liquid metallurgy route is challenging. In this work amorphous Ca5Mg60+xZn35?x (X = 0, 3 and 7) alloys have been successfully synthesized through solid state amorphization using a high energy planetary ball mill. X-ray diffraction was used to identify the crystalline phases of the powder during reaction. Evolution of amorphous phase was analysed using a parameter involving the ratio of integral area of peaks to the integral area of background (IPB) obtained from XRD patterns. Results showed reaction time increases with decreasing Zn content in Ca5Mg60+xZn35?x (X = 0, 3 and 7) alloy to obtain maximum amorphous structure with a small amount of residual crystalline phase. Prolonged milling of these powders, to eliminate residual crystalline phases, resulted in the nucleation of Mg102.08Zn39.6 phase. The composition dependent characteristic temperatures and thermal stabilities were studied using differential scanning calorimetry.
Keywords:Solid state reaction  Mechanical alloying  Amorphization  X-ray diffraction (XRD)  Thermal analysis
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