首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Thermodynamic analysis using experimental magnetization data of the austenite/ferrite phase transformation in Fe-xNi alloys (x = 0, 2, 4 wt%) in a strong magnetic field
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Thermodynamic analysis using experimental magnetization data of the austenite/ferrite phase transformation in Fe-xNi alloys (x = 0, 2, 4 wt%) in a strong magnetic field

机译:使用强磁场中的Fe-xNi合金(x = 0、2、4 wt%)中奥氏体/铁素体相变的实验磁化数据进行热力学分析

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摘要

The effect of a strong magnetic field on the transformation temperature from ferrite to austenite and from austenite to ferrite is examined in Fe-xNi alloys (x = 0, 2, 4 wt%). Alloy magnetization measurements are used to calculate the magnetic contribution to the driving force and to account thermodynamically for the field dependence of the transformation temperatures. The predicted shift of the transformation temperatures is compared with experimental dilatometry measurements of transformation temperatures, up to 16 T. The use of experimental magnetization measurements is found to be an accurate alternative to the Weiss molecular field theory for the prediction of the magnetization of ferrite close to its Curie point.
机译:在Fe-xNi合金(x = 0、2、4 wt%)中,研究了强磁场对从铁素体到奥氏体以及从奥氏体到铁素体的转变温度的影响。合金磁化强度的测量值用于计算对驱动力的磁影响,并在热力学上说明相变温度的场依赖性。将相变温度的预测变化与高达16 T的相变温度的实验膨胀测量法进行了比较。发现使用实验磁化强度测量方法是Weiss分子场理论预测铁氧体磁化强度的准确替代方法close达到居里点。

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