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Modeling and Simulation of ΔH in Solid State Synthesis of Nanocomposites Al-Cu-Zr
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作者 ali h.alomari M.Aboelsoud 《材料科学与工程(中英文A版)》 2021年第1期26-34,共9页
Amorphous structure generated by high-energy ball miller(BM)is often used as a precursor for generating nanocomposites through controlled devitrification.The amorphous forming composition range of ternary Al-Cu-Zr sys... Amorphous structure generated by high-energy ball miller(BM)is often used as a precursor for generating nanocomposites through controlled devitrification.The amorphous forming composition range of ternary Al-Cu-Zr system was calculated using the extended Miedema’s semiempirical model.Eleven compositions of Al-Cu-Zr system showed a wide range of negative enthalpy of mixing(-ΔH^(mix))and amorphization(-ΔH^(amor))among the constituent elements was selected for synthesis by BM.They yielded either nanocomposites of partial amorphous and crystalline structure or no amorphous phase at all in the as-milled condition.The Al_(88)Cu_(6)Zr_(6) alloy with relatively small negativeΔH^(mix)(-0.4 kJ/mol)andΔH^(amor)(-14.8 kJ/mol)became completely amorphous after 120 h of milling. 展开更多
关键词 Al-Cu-Zr nanocomposite materials high-energy BM X-ray diffraction(XRD)and transmission electron microscope(TEM) Miedema model analysis
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