首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Magnetocaloric refrigerant with wide operating temperature range based on Mn5-xGe3(Co,Fe)(x) composite
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Magnetocaloric refrigerant with wide operating temperature range based on Mn5-xGe3(Co,Fe)(x) composite

机译:基于Mn5-xGe3(Co,Fe)(x)复合材料的宽工作温度范围的磁热制冷剂

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摘要

The Curie temperature of Mn5Ge3 was raised or lowered by alloying the compound with Fe or Co; hence, the temperature at which maximum magnetocaloric effect manifested was easily manipulated by forming Mn5-xGe3(Co,Fe)(x), alloys to ultimately develop a composite magnetic refrigerant consisting of multiple Mn5Ge3 - based alloys. The composite refrigerant was designed to produce a table-like Delta S-M-T curve and to maximize the RC value near room temperature. Linear combination of the Delta S-M-T curves for the constituent materials showed that a composite composed of physical mixture of four different Mn5Ge3-based compounds: Mn5Ge3, Mn5.1Ge2.9, Mn4.75Co0.25Ge3 and Mn4.75Fe0.25Ge3, generated an optimal Delta S-M-T curve with a table-like shape. The composite refrigerant with refrigeration capacity of 52 J kg(-1), peak entropy change at 300 K, and operating temperature range of 45 K under Delta H = 10 kOe was suitable for room-temperature magnetic refrigeration. Moreover, by changing the relative fraction of each constituent material in the composite, it was shown that the operating temperature range could be fine-tuned as needed. The calculated Delta S-M-T curve for the composite refrigerant by linear combination reasonably well matched the experimental Delta S-M-Tcurve estimated from the M-H curves of the composite refrigerant, suggesting that the simple linear combination of the experimental Delta S-M-T curves can be used to predict the performance of the composite magnetic refrigerants whose MCE was originated from the second order magnetic transition. In conclusion, being rare-earth free and lacking thermal or magnetic hysteresis, the Mn5Ge3 - based composite can be a competitive candidate magnetic refrigerant material operating at room temperature in terms of both economy and reliability compared to the giant MCE materials such as Gd - based intermetallic compounds or Heusler alloys. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过使化合物与Fe或Co合金化,可提高或降低Mn5Ge3的居里温度;因此,通过形成Mn5-xGe3(Co,Fe)(x)合金很容易控制呈现最大磁热效应的温度,从而最终开发出由多种Mn5Ge3基合金组成的复合磁性制冷剂。复合制冷剂的设计可产生表格状的Delta S-M-T曲线,并在室温附近将RC值最大化。组成材料的Delta SMT曲线的线性组合表明,由四种不同的Mn5Ge3基化合物的物理混合物组成的复合物:Mn5Ge3,Mn5.1Ge2.9,Mn4.75Co0.25Ge3和Mn4.75Fe0.25Ge3产生了最佳Delta SMT曲线呈表格状。在Delta H = 10 kOe下,制冷量为52 J kg(-1),峰值熵在300 K下变化,工作温度范围为45 K的复合制冷剂适用于室温磁性制冷。此外,通过改变复合物中每种组成材料的相对分数,表明可以根据需要微调工作温度范围。通过线性组合计算得出的复合制冷剂的Delta SMT曲线与根据复合制冷剂MH曲线估算的实验Delta SM-Tcurve合理匹配,表明实验Delta SMT曲线的简单线性组合可用于预测性能MCE源自二阶磁性跃迁的复合磁性制冷剂总之,与稀土金属MCE巨型材料(例如Gd基)相比,基于Mn5Ge3的复合材料不含稀土,并且没有热或磁滞现象,因此在经济性和可靠性方面都可以成为在室温下运行的竞争性磁性制冷剂材料。金属间化合物或Heusler合金。 (C)2015 Elsevier B.V.保留所有权利。

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