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Thermal property of magnetic materials for hydrogen magnetic refrigeration and effect of magnetic field on them

机译:氢磁制冷用磁性材料的热特性及其磁场的影响

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摘要

It is well know that some of rare earth compounds that show giant magnetocaloric effect are utilized for adiabatic magnetic refrigeration (ADR) at cryogenic temperatures. Recent development of materials science, however, suggested practical possibility of magnetic refrigeration at higher temperatures using Active Magnetic Regenerative Refrigeration (AMRR). A project WE-NET plans to make use of AMRR to liquefy hydrogen from room temperature in hydrogen plants for upcoming hydrogen energy society. Higher efficient liquefaction requires magnetic materials with higher magnetocaloric effect, higher thermal conductivity and lower thermal expansion. This paper surveys thermal properties of some of promising rare earth compounds and its magnetic dependence for deep insight in its nature as well as for contribution to a database for designing and development of the practical AMRR for hydrogen liquefaction.
机译:众所周知,一些具有巨大磁热效应的稀土化合物已被用于低温下的绝热磁制冷(ADR)。然而,材料科学的最新发展提出了使用主动磁蓄冷制冷(AMRR)在较高温度下进行磁制冷的实际可能性。 WE-NET的一个项目计划利用AMRR在即将来临的氢能社会中从氢工厂的室温液化氢。更高的液化效率要求磁性材料具有更高的磁热效应,更高的热导率和更低的热膨胀。本文调查了一些有前途的稀土化合物的热性质及其磁依赖性,以深入了解其性质以及为设计和开发实用的氢液化AMRR的数据库做出贡献。

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