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Optimizing Magnetocaloric Properties of Heusler-Type Magnetic Shape Memory Alloys by Tuning Magnetostructural Transformation Parameters

机译:通过调谐磁带性变换参数优化Heusler型磁性形状记忆合金的磁热性能

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摘要

Heusler-type magnetic shape memory alloys show a magnetostructural transformation from the low-magnetization phase to the high-magnetization phase upon the application of external magnetic fields. As a result, these alloys exhibit fascinating multifunctional properties, such as magnetic shape memory effect, magnetocaloric effect, magnetoresistance, and magnetic superelasticity. All these functional properties are intimately related to the coupling of the structural and magnetic transitions. Therefore, deliberate tuning of the magnetostructural transformation parameters is essential for obtaining optimal multifunctional properties. Here, we show that by tuning the magnetostructural transformation parameters, we are able to achieve a variety of novel magnetocaloric properties with different application potentials: (1) large magnetic entropy change of 31.9 J kg~(-1) K~(-1) under a magnetic field of 5 T; (2) giant effective magnetic refrigeration capacity (251 J kg~(-1)) with a broad operating temperature window (33 K) under a magnetic field of 5 T; (3) large reversible field-induced entropy change (about 15 J kg~(-1) K~(-1)) and large reversible effective magnetic refrigeration capacity (77 J kg~(-1)) under a magnetic field of 5 T. The balanced tuning of magnetostructural transformation parameters of magnetic shape memory alloys may provide an instructive reference to the shape memory and magnetic refrigeration communities.
机译:HEUSLER型磁形记忆合金显示出外部磁场施加外部磁场时从低磁化阶段到高磁化阶段的磁性结构变换。结果,这些合金表现出迷人的多功能性质,例如磁形记忆效应,磁热效应,磁阻和磁性超弹性。所有这些功能性质与结构和磁性过渡的耦合密切相关。因此,故意调整磁性结构转化参数对于获得最佳多功能性质至关重要。在这里,我们表明,通过调整磁性结构转换参数,我们能够实现具有不同应用电位的各种新型磁热性能:(1)大磁熵变为31.9J kg〜(-1)k〜(-1)在5吨的磁场下; (2)巨大的有效磁制冷能力(251 J kg〜(-1)),磁场下的宽工作温度窗口(33 k)为5吨; (3)大型可逆场诱导的熵变(约15J kg〜(-1)k〜(-1))和磁场下的大可逆有效磁制冷容量(77 kg〜(-1))磁形记忆合金的磁性结构变换参数的平衡调谐可以提供对形状记忆和磁制冷群落的有效参考。

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