Crystallization kinetics of bulk Cu58.1Zr35.9Al6 alloy

The crystallization kinetics of the bulk amorphous Cu58.1Zr35.9Al6 alloy was examined by differential scanning calorimetry under continuous heating and isothermal annealing. During continuous heating, the activation energy of crystallization was determined to be 383 kJ/mol by Kissinger method. Howev...

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Published inTransactions of Nonferrous Metals Society of China Vol. 19; no. 6; pp. 1618 - 1622
Main Author 于韶旭 朱春雷 全世光 李艳辉 王英敏 王清 董闯
Format Journal Article
LanguageEnglish
Published 01.12.2009
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ISSN1003-6326
DOI10.1016/S1003-6326(09)60078-9

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Abstract The crystallization kinetics of the bulk amorphous Cu58.1Zr35.9Al6 alloy was examined by differential scanning calorimetry under continuous heating and isothermal annealing. During continuous heating, the activation energy of crystallization was determined to be 383 kJ/mol by Kissinger method. However, on the isothermal annealing, the activation energy was determined to be 459.2 kJ/mol by the Arrhenius method, which was much larger than that obtained from the Kissinger method. The different temperatures at which crystallization occurs are responsible for the discrepancy in the activation energy. The average Avrami exponent of about 3,5 implies that the crystallization process of the bulk amorphous Cu58.1Zr35.9Al6 alloy is diffusion-controlled with a nucleation rate decreasing with time.
AbstractList The crystallization kinetics of the bulk amorphous Cu58.1Zr35.9Al6 alloy was examined by differential scanning calorimetry under continuous heating and isothermal annealing. During continuous heating, the activation energy of crystallization was determined to be 383 kJ/mol by Kissinger method. However, on the isothermal annealing, the activation energy was determined to be 459.2 kJ/mol by the Arrhenius method, which was much larger than that obtained from the Kissinger method. The different temperatures at which crystallization occurs are responsible for the discrepancy in the activation energy. The average Avrami exponent of about 3,5 implies that the crystallization process of the bulk amorphous Cu58.1Zr35.9Al6 alloy is diffusion-controlled with a nucleation rate decreasing with time.
Author 于韶旭 朱春雷 全世光 李艳辉 王英敏 王清 董闯
AuthorAffiliation Key Laboratory of Materials Modification by Laser, Ion and Electron Beams, Dalian University of Technology, Dalian1 16024, China College of Environmental Science and Engineering, Dalian Jiaotong University, Dalian 116028, China
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different scanning calorimetry (DSC)
43-1239/TG
Cu58.1Zr35.9Al6 alloy; different scanning calorimetry (DSC); crystallization kinetics
Cu58.1Zr35.9Al6 alloy
crystallization kinetics
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Snippet The crystallization kinetics of the bulk amorphous Cu58.1Zr35.9Al6 alloy was examined by differential scanning calorimetry under continuous heating and...
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SubjectTerms 大块非晶合金
活化能
等温退火
结晶动力学
结晶温度
连续扫描
速率控制
Title Crystallization kinetics of bulk Cu58.1Zr35.9Al6 alloy
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