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中国物理学会期刊

穆斯堡尔谱学研究非晶TM80M20合金的微观结构

CSTR: 32037.14.aps.36.902

STUDY ON THE MICROSTRUCTURE OF AMORPHOUS ALLOYS TM80M20 BY MSSBAUER SPECTROSCOPY

CSTR: 32037.14.aps.36.902
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  • 在室温下和4.2K下测定了非晶Fe80B20-xMx合金(M=P,C)的穆斯堡尔吸收谱。利用分布参数拟合程序得到了超精细内场Hi和同质异能移IS同类金属成份的变化关系。利用这些结果考察了非晶合金的微观结构,比较了两类结构模型:Bernal-Polk模型和微晶模型。对比非晶合金和它们的相应晶相的行为得知,这类非晶合金中不存在微晶近程序,Bernal-Polk模型对描述TM-M类非晶合金的微观结构优于微晶模型。

     

    The Mossbauer spectra of amorphous alloys Fe80B20-xMx (M = P, C) at room temperature and 4.2 K have been measured. It is found that the mean values of the hyperfine field and the isomer shift vary linearly when M (P, C) substitutes for B. Two structure models of amorphous alloys, microcrystal model and Bernal-Polk model, have been compared using these results and that of their crystalline counterparts. The study suggests that there do not exist a microcrystalline short range order and corresponding transition in amorphous alloys TM-M as in the crystalline counterparts. For describing the microstructure of amorphous alloys TM-M the Bernal-Polk model is preferable to the microcrystal model.

     

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