Magnetic refrigeration is a new technology that makes use of the magnetocaloric effect of solid-state refrigerants.
特别介绍了利用固态致冷剂的磁致变温效应的新技术。
The structure and magnetocaloric effect in the compounds were investigated by means of X-ray diffraction and magnetic measurements.
通过X射线衍射和磁性测量研究了样品的物相结构和磁热效应。
The first order phase transformation in the samples made of commercial Gd was destroyed by impurities, and no giant magnetocaloric effect was found.
发现采用商业级钆配制合金时,由于杂质抑制了材料的一级相变,未发现巨磁热效应。
The magnetization curves of these alloys were measured with vibration sample magnetometer, from which magnetic entropy changes were calculated and magnetocaloric effect were evaluated.
用振动样品磁强计测量它们的磁化曲线,从而计算出磁熵变,估计出磁热效应。
Furthermore, the importance of the equipment of direct measure for use in the magnetocaloric effect in the research of room-temperature magnetic refrigeration technology is mainly pointed.
指出直接测量装置在室温磁制冷技术研究中的重要作用。
Furthermore, the importance of the equipment of direct measure for use in the magnetocaloric effect in the research of room-temperature magnetic refrigeration technology is mainly pointed.
指出直接测量装置在室温磁制冷技术研究中的重要作用。
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