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Magnetic Properties of FeNi Alloys for High-temperature Thermomagnetic Power Generation

机译:高温热磁发电的FENI合金磁性

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In this paper, the magnetic properties and heat transfer performance of Fe_(99.3-x)Ni_xMn_(0.4)Si_(0.3) (x=33,35,37,39,41,43) alloys near the Curie temperature(Tc) were investigated. The results show that the Fe_(99.3-x)Ni_xMn_(0.4)Si_(0.3) alloys have a wide Curie-temperature window and their Tc approximately linearly increases from 450K to 647K with the Ni content increasing from 33% to 43%. The change rate of the magnetic induction(ΔB·ΔT~(-1)) near the Curie temperature shows the peak with changing the temperature. The ΔB·ΔT~(-1) of Fe_(99.3-x)Ni_xMn_(0.4)Si_(0.3) (x≥37) alloys is higher than the reported maximum of 0.0202T·K~(-1) for second-order phase transition materials. Therefore, the Fe_(100-x)Ni_xMn_(0.4)Si_(0.3) alloys are suitable for thermomagnetic power generation in the temperature range above 473K. The energy conversion process of a platy sample (0.2×0.2×0.001m~3) of the alloy with x=37 in the static thermomagnetic power generation was simulated and the maximum electromotive force of 1.47V was generated in the simulation.
机译:在本文中,Fe_(99.3-X)Ni_xMn_的磁特性和传热性能(0.4)SI_(0.3)(X = 33,35,37,39,41,43)接近居里温度合金(TC)进行定量调查。该结果表明,Fe_(99.3-X)Ni_xMn_(0.4)SI_(0.3)合金具有从450K宽居里温度窗口及其锝近似线性地增加至647K与Ni含量增加33%至43%。磁感应(ΔB·ΔT〜(-1))居里温度附近显示的变化率与改变温度的峰值。所述ΔB·ΔT〜(-1)Fe_(99.3-X)Ni_xMn_(0.4)SI_(0.3)(x≥37)合金比0.0202T的报告的最大更高的·K〜(-1)为二阶相变材料。因此,Fe_(100-x)的Ni_xMn_(0.4)SI_(0.3)合金适合于在温度范围高于473K的热磁发电。板状样品的在静态热磁发电,其中x = 37的合金的(0.2×0.2×0.001米〜3)的能量转换过程进行模拟,并在模拟产生1.47V的最大电动势。

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