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Improvement of magnetocaloric properties of Gd-Ge-Si alloys by alloying with iron

机译:用铁合金化改善Gd-Ge-Si合金的磁热性能

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The influence of annealing of Gd_5Ge_2Si_2Fe_x alloys at 1200°C and of alloying with various amount of iron on structure as well as thermal and magnetocaloric properties is investigated. It was found that annealing for 1 to 10 hours improves the entropy change, but reduces the temperature of maximum magnetocaloric effect by up to 50 K. Prolonged annealing of the Gd_5Ge_2Si_2 alloy results in the decrease of entropy change due to the reduction of Gd_5Ge_2Si_2 phase content. Addition of iron to the ternary alloy enhances the magnetocaloric effect, if x =0.4-0.6, especially if alloying is combined with annealing at 1200°C: the peak value of the isothermal entropy change from 0 to 2 T increases from 3.5 to 11 J/kgK. Simultaneously, the, temperature of maximum magnetocaloric effect drops to 250 K. The changes in magnetocaloric properties are related to the change in phase transformation from the second order for arc molten ternary alloy to first order in the case of annealed and/or alloyed with iron. The results of this study indicate that the minor addition of iron and heat treatment to Gd-Ge-Si alloys may be useful in improving the materials' magnetocaloric properties.
机译:研究了GD_5GE_2SI_2FE_X合金在1200℃和用各种铁结构上的合金化以及热和磁热性质的影响的影响。发现退火1至10小时改善了熵变化,但是将最大磁热效应的温度降低至50k。GD_5GE_2SI_2合金的延长退火导致由于GD_5GE_2SI_2相含量的减少而导致熵变化的降低。如果x = 0.4-0.6,则加入铁到三元合金增强了磁热效应,特别是如果合金化与1200℃的退火相结合,则等温熵的峰值从0到2 t的增加从3.5到11 j增加/ kgk。同时,最大磁热效应的温度下降至250k.磁热质性质的变化与电弧熔融三元合金的第二阶的相变的变化与铁的第一顺序有关。与铁的退火和/或合金化。该研究的结果表明,对GD-Ge-Si合金的次氧化物和热处理可用于改善材料的磁热性质。

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