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采用微型热电偶直接测量磁热效应的实用系统。

Practical system for the direct measurement of magneto-caloric effect by micro-thermocouples.

作者信息

Kamarád J, Kaštil J, Arnold Z

机构信息

Institute of Physics ASCR, v.v.i., Na Slovance 2, 182 21 Praha 8, Czech Republic.

出版信息

Rev Sci Instrum. 2012 Aug;83(8):083902. doi: 10.1063/1.4739962.

Abstract

A system for direct measurements of the magneto-caloric effect (MCE) exploits a rapid transport of a sample into or from magnetic field in permanent Halbach-type (1 T) or superconducting (4.7 T) magnets. Time dependence of induced changes of the sample temperature, ΔT(t), is detected directly by the differential Cu-Constantan-Cu micro-thermocouples with time steps of 300 ms. A sample placed inside an evacuated simple LN(2) cryostat is either totally isolated (adiabatic conditions) or partly connected with the copper sample holder (non-adiabatic conditions). The last arrangement (a model of the Brayton cycle) is used to simulate an application of MCE in refrigeration techniques. The relations describing ΔT(t) that allow an analysis of MCE of the studied materials are based on the general cooling law. The effect of the first-order magnetic transition on MCE of selected sample is also demonstrated by non-standard ΔT(t) curves measured in the last mentioned experimental arrangements.

摘要

一种用于直接测量磁热效应(MCE)的系统利用样品在永久哈尔巴赫型(1 T)或超导(4.7 T)磁体中快速进出磁场的过程。通过差分铜-康铜-铜微型热电偶以300 ms的时间步长直接检测样品温度感应变化ΔT(t)的时间依赖性。置于抽空的简易液氮低温恒温器内的样品要么完全隔离(绝热条件),要么部分与铜样品架相连(非绝热条件)。最后一种配置(布雷顿循环模型)用于模拟MCE在制冷技术中的应用。描述ΔT(t)从而能够分析所研究材料磁热效应的关系式基于一般冷却定律。在上述最后一种实验配置中测得的非标准ΔT(t)曲线也证明了一级磁转变对所选样品磁热效应的影响。

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