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Direct measurement of the magnetocaloric effect in Gd based alloy

机译:直接测量GD基合金中的磁热效应

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A magnetocaloric refrigeration test setup for adiabatic cooling near room temperature has been designed. This setup enables the magnetization (adiabatic heating) and demagnetization processes (adiabatic cooling) of magnetocaloric material fast. We have measured adiabatic temperature change (ΔT_(ad)) for bulk gadolinium during magnetization and demagnetization processes under 1 T magnetic field over the temperature range 4 to 34°C. The ΔT_(ad) vs temperature curve shows asymmetric nature around the peak temperature. The fall in ΔT_(ad) is more gradual above the peak temperature, whereas it falls relatively fast below the peak temperature. The existence of domains even after removal of magnetic field (below peak temperature) could be responsible for the observed behavior. The present setup can be used to optimize the magnetization or demagnetization process as well as heat exchange with the hot and cold heat exchangers, which will enable us to improve the efficiency of the magnetic refrigerator device.
机译:设计了在室温附近的绝热冷却的磁热制冷试验装置。该设置能够快速实现磁化(绝热加热)和退磁过程(绝热冷却)。在磁化和退磁过程中,在4至34℃的温度范围内的磁化和退磁过程下,我们在磁化和退磁过程中测量了散装钆的绝热温度变化(Δt_(ad))。 ΔT_(AD)VS温度曲线显示峰值温度周围的不对称性质。 ΔT_(AD)的跌落更高的峰值温度高于峰值温度,而它比峰值温度低得相对快。即使在去除磁场(低于峰值温度)之后也可能对观察到的行为负责。本设置可用于优化磁化或去磁过程以及与热和冷热交换器的热交换,这将使我们能够提高磁冰箱装置的效率。

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