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Magnetocaloric effect in some magnetic materials in alternating magnetic fields up to 22 Hz

机译:某些磁性材料在高达22 Hz的交变磁场中的磁热效应

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Direct measurements of the magnetocaloric effect (MCE) in different materials (Gd, Fe48Rh52, Ni43Mn37.9In12.1Co7 and Ni2.07Co0.09Mn0.84Ga) in alternating magnetic fields with frequencies f <= 22 Hz and an amplitude Delta H = 6.2 kOe are carried out. The MCE in Gd shows inconsiderable changes with field frequency. Near paramagnetic-ferromagnetic phase transition in Ni43Mn37.9In12.1Co7 Heusler alloy a slight reduction of MCE with frequency is observed. In weak alternating fields in materials with AFM-FM magneto-structural phase transitions (Fe48Rh52, Ni43Mn37.9In12.1Co7) it is not possible to get a structural contribution to overall MCE because of irreversibility of the transitions in these fields. Near magneto-structural phase transitions the MCE in these alloys has only magnetic contribution, and does not show a significant dependence on the magnetic field frequency. In Ni2.07Co0.09Mn0.84Ga Heusler alloy the MCE vanishes at frequencies about 20 Hz. The obtained results show the increase of frequencies of operating cycles is one of the powerful methods to improve the efficiency of magnetic refrigerators in case of Gd as a refrigerant.
机译:在频率f <= 22 Hz和振幅Delta H = 6.2 kOe的交变磁场中直接测量不同材料(Gd,Fe48Rh52,Ni43Mn37.9In12.1Co7和Ni2.07Co0.09Mn0.84Ga)中的磁热效应(MCE)被执行。 Gd中的MCE随场频显示出微不足道的变化。 Ni43Mn37.9In12.1Co7 Heusler合金中接近顺磁-铁磁相变,观察到MCE随着频率的降低。在具有AFM-FM磁结构相变的材料(Fe48Rh52,Ni43Mn37.9In12.1Co7)的弱交变场中,由于这些场中的跃迁不可逆,因此不可能对整个MCE产生结构性贡献。这些合金中的MCE接近磁-结构相变,仅具有磁性,对磁场频率没有显着依赖性。在Ni2.07Co0.09Mn0.84Ga Heusler合金中,MCE在大约20 Hz的频率下消失。获得的结果表明,在使用Gd作为制冷剂的情况下,增加运行周期的频率是提高磁性制冷机效率的有效方法之一。

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