FeCuNbSiB合金纳米晶相和残余非晶相的研究

Lin De-ming, Wang Hua-sheng, Wu Yi-chu, Lin Mu-liang
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引用次数: 1

摘要

采用磁热重分析(MTGA)技术研究了FeCuNbSiB非晶合金的表观失重与温度的关系σ-T和dσ/dT-T曲线。结果表明,样品的结晶过程可分为5个阶段。对样品在480 ~ 610℃退火1 h的研究表明,当退火温度(Ta)低于540℃时,纳米晶α-Fe(Si)相的数量随Ta的增加而明显增加,残余非晶相的居里温度(TC)也随Ta的增加而线性增加,即TC=0.52Ta+91.7℃,相关系数γ=0.98。测定了α-Fe(Si)纳米晶相和残余非晶相体积分数随Ta的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies of nanocrystalline phase and residual amorphous phase of FeCuNbSiB alloy
The σ-T and dσ/dT-T curves of the FeCuNbSiB amorphous alloy, which are the relationship between "apparent weight loss" and temperature, are investigated by magnetic thermogravimetry analysis (MTGA) technique. It is found that the crystallization process of the samples can be divided into five stages. The studies of samples annealed in the temperature range of 480-610 °C for 1 h show that when the annealing temperature (Ta) is lower than 540 °C, the quantity of nanocrystalline α-Fe(Si) phase increases evidently with Ta, and the Curie temperature (TC) of residual amorphous phase also increases linearly with Ta, i.e., TC=0.52Ta+91.7 °C, with correlation coefficient γ=0.98. The variation of volume fraction of α-Fe(Si) nanocrystalline phase or residual amorphous phase with Ta is measured.
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