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Permanent magnet array for the magnetic refrigerator

机译:磁性冰箱的永磁体阵列

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摘要

Recent research into the development of magnetic refrigeration (MR) operating at room temperature has shown that it can provide a reliable, energy-efficient cooling system. To enhance the cooling power of the magnetic refrigerator, it is required to use a magnetic refrigerant material with large magnetocaloric effect (MCE) at the appropriate temperature. Most advanced magnetic refrigerant materials show largest MCE at high applied magnetic fields generated by a superconducting magnet. For application of MCE to air conditioners or household refrigerators, it is essential to develop a permanent magnet array to form a compact, strong, and energy-efficient magnetic field generator. Generating a magnetic field well above the remanence of a permanent magnetmaterial is hard to achieve through conventional designs. A permanent magnet array based on a hollow cylindrical flux source is found to provide an appropriate geometry and magnetic field strength for MR applications.
机译:对在室温下运行的磁制冷(MR)的发展的最新研究表明,它可以提供可靠,节能的冷却系统。为了提高磁性制冷机的冷却能力,需要在适当的温度下使用具有大的磁热效应(MCE)的磁性制冷剂材料。最先进的磁性制冷剂材料在超导磁体产生的高施加磁场下显示出最大的MCE。为了将MCE应用于空调或家用冰箱,必须开发永磁体阵列以形成紧凑,坚固且节能的磁场发生器。通过常规设计很难产生远远超过永磁材料的剩磁的磁场。发现基于空心圆柱形磁通量源的永磁体阵列可为MR应用提供适当的几何形状和磁场强度。

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