首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structure, magnetic and magnetothermal properties of the non-stoichiometric ErCo2Mnx alloys
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Structure, magnetic and magnetothermal properties of the non-stoichiometric ErCo2Mnx alloys

机译:非化学计量的ErCo2Mnx合金的结构,磁和磁热性质

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The structure, magnetic and magnetothermal properties and heat capacity of the ErCo2Mnx (0 <= x <= 1.4) non-stoichiometric alloys have been studied. It is shown that the alloys with x <= 0.8 are almost single-phase with the MgCu2-type Laves-phase structure, while the alloys for x >= 1.0 contain considerable amount of the cubic Th6Mn23-type phase. Alloying with manganese leads to a substantial increase in the exchange interactions. For the binary ErCo2 compound, the magnetization shows a first-order magnetic phase transition with the Curie temperature T-C = 35 K. For all the Mn-containing alloys studied, the transition is found to be the second-order type; the Curie temperature in ErCo2Mnx sharply growths with increasing x and reaches its maximum value 212 K for the ErCo2Mn0.6 alloy. Using the magnetization data and the results of the heat capacity measurements, we estimated the magnetocaloric effect for these compounds. The obtained results are discussed on the assumption of a strong variation of the 3d-metal magnetic moments upon alloying with Mn. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了ErCo2Mnx(0 <= x <= 1.4)非化学计量合金的结构,磁热性能和热容量。结果表明,x <= 0.8的合金几乎为单相,具有MgCu2型Laves相结构,而x> = 1.0的合金中包含大量的立方Th6Mn23型相。与锰合金化导致交换相互作用的大量增加。对于二元ErCo2化合物,磁化强度在居里温度T-C = 35 K时显示出一阶磁性相变。对于所有研究的含Mn合金,该转变均为二阶类型。 ErCo2Mnx的居里温度随x的增加而急剧增加,并达到ErCo2Mn0.6合金的最大值212K。使用磁化数据和热容测量结果,我们估算了这些化合物的磁热效应。在假定3d金属磁矩与Mn合金发生强烈变化的假设下讨论了获得的结果。 (C)2016 Elsevier B.V.保留所有权利。

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