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Investigation of microstructural influence on entropy change in magnetocaloric polycrystalline samples of NiMnGaCu ferromagnetic shape memory alloy

机译:Nimngacu铁磁形状记忆合金磁热多晶样品熵变化的微观结构影响研究

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Among NiMnGa-based quaternary systems, NiMnGaCu exhibits an interesting giant magnetocaloric effect thanks to the temperature overlapping of magnetic transition and thermoelastic martensitic transformation (TMT), in particular for compositions with ≈6at% Cu content. In the present work polycrystalline alloy samples with Ni50Mn18.5Cu6.5Ga25chemical composition were prepared. We present an extensive calorimetric and structural characterization to explore the correlation between microstructural properties and magnetocaloric response induced by means of selected thermal treatments, likely driven by the contribution of TMT to the magnetocaloric effect. Our results give important hints on how the efficiency of the martensitic transition and its modulation in temperature has a final effect on the total ΔS change.
机译:在基于NIMNGA的第四纪系统中,由于磁性转变和热弹性马氏体转化(TMT)的温度重叠,NIMNGACU表现出有趣的巨大磁热效应,特别是对于≈6At%Cu含量的组合物。在本作工作中,制备了具有Ni50mN18.5cu6.5cu6.5cu6.5ga 25℃的多晶合金样品。我们介绍了广泛的量热和结构表征,以探讨通过选定的热处理引起的微观结构性能和磁热应答之间的相关性,这可能由TMT对磁热效应的贡献驱动。我们的结果对如何对马氏体转变的效率及其在温度调节的效率进行最终效果的重要提示。

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