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Experimental investigation of two-stage active magnetic regenerative refrigerator operating between 77 K and 20 K

机译:在77 K和20 K之间运行的两级有源磁蓄冷式冰箱的实验研究

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This paper presents an experimental investigation on a magnetic refrigerator operating between 77 K and 20 K. Since the magneto-caloric effect of typical magnetic refrigerant is concentrated in a narrow temperature region, four different rare-earth intermetallic compounds (GdNi_2, Dy_(0.85)Er_(0.15)Ab, Dy_90.5)Dr_(0.5)Al_2, and Gd_(0.1)Dy_(0.9)Ni_2) are utilized according to their favorable temperature regions. The magnetic refrigerator is composed of two stages each of that is made of two different porous active magnetic regenerators. Helium gas as the heat transfer medium in the magnetic refrigerator is shuttled similar to a GM type pulse tube refrigerator so that the overall cooling capacity is enhanced by gas expansion effect when both gas and magnetic expansions are properly coordinated. The approximate peak magnetic field of 4 T is provided for the internal region of the regenerators by the AC superconducting magnet which can fast ramp up to the maximum field for 3 s. The fabricated magnetic refrigerator reached the lowest no-load temperature of 24 K and the whole temperature span was approximately 56 K rather than 57 K. The cooling performance of the system is sensitive according to the load match between the first and the second stages in conjunction with helium mass flow rate distribution.
机译:本文介绍了在77 K和20 K之间运行的磁性制冷机的实验研究。由于典型磁性制冷剂的磁热效应集中在狭窄的温度区域,因此四种不同的稀土金属间化合物(GdNi_2,Dy_(0.85)根据它们的有利温度区域,使用了Er_(0.15)Ab,Dy_90.5)Dr_(0.5)Al_2和Gd_(0.1)Dy_(0.9)Ni_2)。磁制冷机由两个阶段组成,每个阶段均由两个不同的多孔有源磁蓄热器组成。像GM型脉冲管制冷机一样,作为磁性制冷机中的传热介质的氦气也被穿梭,因此,当气体和磁膨胀都被适当地协调时,通过气体膨胀效应可以提高整体冷却能力。交流超导磁体为再生器的内部区域提供了大约4 T的峰值磁场,该超导磁体可以在3 s内快速上升到最大磁场。制成的磁性制冷机的最低空载温度为24 K,整个温度范围约为56 K,而不是57K。根据第一级和第二级之间的负载匹配,系统的冷却性能非常敏感。与氦气质量流量分布有关。

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