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首页> 外文期刊>JOURNAL OF METALLURGY AND MATERIALS SCIENCE >Rapidly solidified CoFeSiBCr amorphous wire :From manipulation to giant magnetoimpedance sensor applications
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Rapidly solidified CoFeSiBCr amorphous wire :From manipulation to giant magnetoimpedance sensor applications

机译:快速固化的CoFeSiBCr非晶线材:从操作到巨大的磁阻传感器应用

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摘要

Amorphous wires of nominal composition Co_(66)Fe_2Si_(13)B_(15)Cr_4 were prepared by in-water quenching technique. The effect of process parameters such as wheel speed, ejection pressure, ejection angle, dwell time etc. on preparation of the wire was examined carefully. The amorphicity of the wire was verified by X-ray diffraction (XRD). Crystallization study was carried out by Differential Scanning Calorimetry (DSC). Subsequently, the crystallization kinetics was analyzed by modified Kissinger expression and from the slope of the Kissinger plot, the activation energy was calculated and found to be 139 KJ/mol. The giant magnetoimpedance (GMI) properties were studied using automated GMI measurement system. The GMI controlling parameters like driving frequency of the ac, rms value of ac and applied static magnetic field (H_(dc)) etc were found to display a sensitive change in GMI properties at an optimal frequency of 5 MHz and driving current of 5 mA_(rms) The influence of these controls on the output parameters of GMI like GMI_(max) single peak (SP) to double peak (DP) transition, GMI field sensitivity (ξ) etc. throws light on the potential application of the wires for sensors.
机译:采用水淬技术制备了标称成分为Co_(66)Fe_2Si_(13)B_(15)Cr_4的非晶线材。仔细检查了工艺参数(如轮速,喷射压力,喷射角度,停留时间等)对焊丝制备的影响。通过X射线衍射(XRD)验证了导线的非晶性。结晶研究是通过差示扫描量热法(DSC)进行的。随后,通过修改后的Kissinger表达式分析结晶动力学,并从Kissinger图的斜率计算出活化能,发现其为139 KJ / mol。使用自动GMI测量系统研究了巨磁阻抗(GMI)特性。发现GMI控制参数(例如交流驱动频率,交流有效值和施加的静磁场(H_(dc))等)在5 MHz的最佳频率和5 mA_的驱动电流下显示出GMI特性的敏感变化。 (rms)这些控件对GMI输出参数的影响,例如GMI_(max)单峰(SP)到双峰(DP)跃迁,GMI场灵敏度(ξ)等。传感器。

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