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Co68.5Fe4Si10B17.5非晶合金晶化动力学行为研究
引用本文:郝雷,陈学定,王天民,郝维昌.Co68.5Fe4Si10B17.5非晶合金晶化动力学行为研究[J].稀有金属,2007,31(2):174-178.
作者姓名:郝雷  陈学定  王天民  郝维昌
作者单位:1. 北京航空航天大学理学院,北京,100083
2. 兰州理工大学材料科学与工程学院,甘肃,兰州,730050
基金项目:国家高技术研究发展计划(863计划)
摘    要:采用示差热分析(DSC)研究了旋铸急冷法在大气环境中制备出的Co68.5Fe4Si10B17.5非晶合金的非等温晶化的动力学行为。研究发现:在连续加热条件下,随升温速率的加快,合金的特征温度Tg,Tx,Tp均向高温区移动。当分别采用晶化开始温度和峰值温度时,所得非晶合金的激活能并不是稳定值。用Doyle-Ozawa方法计算出的激活能值比Kissinger法计算出的激活能值要大。非晶态Co68.5Fe4Si10B17.5合金的晶化百分比与退火温度和退火时间的关系曲线均呈S型。随加热速度的增加,非晶合金的晶化百分比与温度的关系曲线向高温处移动。

关 键 词:非晶合金  晶化动力学  热分析  非等温晶化
文章编号:0258-7076(2007)02-0174-05
修稿时间:2006-07-202006-11-23

Study on Crystallization Kinetics of Co68.5Fe4Si10B17.5 Amorphous Alloys
Hao Lei,Chen Xueding,Wang Tianmin,Hao Weichang.Study on Crystallization Kinetics of Co68.5Fe4Si10B17.5 Amorphous Alloys[J].Chinese Journal of Rare Metals,2007,31(2):174-178.
Authors:Hao Lei  Chen Xueding  Wang Tianmin  Hao Weichang
Affiliation:1. Beijing University of Aeronautics and Astronautics, Beijing 100083, China ; 2. Lanzhou University of Science and Technology,Lanzhou 730050, China
Abstract:Co68.5Fe4Si10B17.5 amorphous alloys were prepared by a single roller melt-spinning technique in an air atmosphere.The crystallization kinetics were studied based on differential scanning calorimetric(DSC) measurements were performed on the exothermic peaks of the sample.One was non-isothermal crystallization kinetics at constant heating rate,which could be analyzed by the Kissinger and DoyleOzawa method.From the non-isothermal DSC thermogram,it could be seen that the value of crystallization peak temperature increased with increasing heating rate.The apparent active energy was variation suggested by Kissinger method with Tg,Tx and Tp.The average active energy suggested by Doyle-Ozawa was higher than that obtained by Kissinger method.The crystallized fraction x as a function of temperature at different heating rates exhibited "S" type.It moved to high temperature with increasing heating rate.
Keywords:amorphous alloys  crystallization kinetics  thermal analysis  non-isothermal crystallization
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