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Fe_(78)Si_(9)B_(13)非晶合金纳米晶化的低频脉冲磁场处理方法 被引量:5

Nano-Crystallization of Amorphous Alloy Fe_(78)Si_(9)B_(13)by Treatment of Low-Frequency Pulsating Magnetic Field
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摘要 低频脉冲磁场处理是一种崭新的非热处理型非晶纳米晶化的方法·针对非晶合金Fe78Si9B13进行了低频脉冲磁场处理,用M ssbauer谱仪、透射电子显微镜观察处理后样品的微观结构变化·研究表明,低频脉冲磁场可促进非晶合金Fe78Si9B13发生纳米晶化,在所用脉冲磁场参数下,晶粒尺寸为2~10nm,且试样温升小于20℃·结合脉冲磁场参数对晶化量的影响,初步探讨了脉冲磁场对非晶合金Fe78Si9B13纳米晶化的作用机制· The treatment of low-frequency pulsating magnetic field is a brand-new process for the nano-crystallization of amorphous alloy without heat treatment. The specimens of the alloy Fe_(78)Si_9B_(13) after such a treatment were observed by Mssbauer spectroscopy and TEM. The results showed that the low-frequency pulsating magnetic field will expedite the nano-crystallization process of the amorphous alloy Fe_(78)Si_9B_(13), by which the crystalline grain size is about 2~10?nm with a rise in temperature lower than 20?℃ under conditions of the parameters used in test. The nano-crystallization mechanism was discussed preliminarily in combination with the effect of the parameters of pulsating magnetic field on the crystalline-phase content.
机构地区 东北大学理学院
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2003年第10期1018-1020,共3页 Journal of Northeastern University(Natural Science)
基金 高等学校博士学科点专项基金资助项目(20020145009).
关键词 非晶合金 Fe_(78)Si_(9)B_(13) 纳米晶化 脉冲磁场 穆斯堡尔谱 晶化机理 amorphous alloy Fe_(78)Si_(9)B_(13) nano-crystallization pulsating magnetic field Mossbauer spectrum crystallization mechanism
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