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Theoretical Approach to Investigation of the Magnetic and Magnetocaloric Properties of Heusler Ni-Mn-Ga Alloys

机译:Heusler Ni-Mn-Ga合金磁性和磁热性能研究的理论方法

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The magnetic and magnetocaloric properties of Heusler Ni2 + Mn-x(1 -) Ga-x alloys (x = 0.16, 0.18, and 0.3) have been studied using a model based on the Malygin theory of smeared phase transitions, the Bean-Rodbell theory of first-order phase transitions, and the mean-field theory. The temperature dependences of strain, magnetization, and isothermal change in entropy of these alloys have been analyzed. It is shown that the largest change in the magnetic entropy is observed in a Ni2.18Mn0.82Ga alloy, in which the martensitic transition is accompanied by a change in the magnetic ordering. The smallest change in the entropy is observed in a Ni2.3Mn0.7Ga alloy, which exhibits the magnetocaloric effect in a martensitic phase with a change in the magnetic ordering. However, the refrigeration capacity of this alloy is twice as high as that of the other considered compositions.
机译:使用基于涂抹相转变的麦基底漆理论的模型研究了Heusler Ni2 + Mn-X(1 - )Ga-X合金(x = 0.16,0.18和0.3)的磁性和磁热性性能,豆罗德比尔 一阶阶段过渡理论,与平均场理论。 已经分析了这些合金熵的应变,磁化和等温变化的温度依赖性。 结果表明,在Ni2.18mN0.82Ga合金中观察到磁熵的最大变化,其中马氏体转变伴随着磁性排序的变化。 在Ni2.3mn0.7ga合金中观察到熵的最小变化,其在马氏体相中表现出磁性排序的变化。 然而,这种合金的制冷能力是另一个认为的组合物的两倍。

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