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(Fe1-xCox)86Hf7B6Cu1非晶合金的形成与稳定性研究
Formation and stability of (Fe1-xCox)86Hf7B6Cu1 amorphous alloys
【Author】 CHAO Yue-sheng,ZHANG Rong-hua,YIN Li-juan (College of Science,Northeastern University, Shenyang 110004,China)
【机构】 东北大学理学院;
【摘要】 元素铁、钴、铪、铜(纯度为99.99%)及工业硼铁经充分混合,以真空感应炉炼制母合金(Fe1-xCox)86Hf7B6Cu1(x=0.3、0.5、0.55);用单辊急冷法(辊面线速度约为42m/s,喷铸压差0.05MPa,氩气保护)制备宽约2mm、厚30μm的非晶态薄带,即Fe60Co26Hf7B6Cu1、Fe43Co43Hf7B6Cu1和Fe39Co47Hf7B6Cu13种非晶态合金;不同加热速率下的DTA分析及相同磁脉冲处理条件下的晶化情况研究表明,这3种非晶态合金的结构稳定性高低依次为Fe43Co43Hf7B6Cu1>Fe60Co26Hf7B6Cu1>Fe39Co47Hf7B6Cu1。
【Abstract】 Fe(99.99%),Co(99.99%),Hf(99.99%),Cu(99.99%) and commercial ferroboron were mixed and melted in a vacuum arc melting furnace to make (Fe1-xCox)86Hf7B6Cu1 alloy ingot with x=0.3,0.5,0.55. Amorphous ribbon of 2mm width and 30-40m in thickness was prepared using the single-roller melt-spinning technique in an argon atmosphere. The surface linear velocity of the copper wheel was about 42m/s. The structural stability and crystallization behaviour of the amorphous specimens before and after magneto-pulsing were investigated using DTA,XRD and Mssbauer technique.The results show that the thermal stability of the 3 type of amorphous alloys may be arranged as Fe43Co43Hf7B6Cu1>Fe60Co26Hf7B6Cu1>Fe39Co47Hf7B6Cu1 in the order of their activity.
【Key words】 FeCo-based amorphous alloy; single-roller melt-spinning; structural stability; differential thermal analysis(DTA); crystallization;
- 【会议录名称】 2009中国功能材料科技与产业高层论坛论文集
- 【会议名称】2009中国功能材料科技与产业高层论坛
- 【会议时间】2009-11-07
- 【会议地点】中国江苏镇江
- 【分类号】TG139.8
- 【主办单位】中国仪表功能材料学会、江苏大学、《功能材料》期刊、《功能材料信息》期刊