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首页> 外文期刊>Entropy >Co and In Doped Ni-Mn-Ga Magnetic Shape Memory Alloys: A Thorough Structural, Magnetic and Magnetocaloric Study
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Co and In Doped Ni-Mn-Ga Magnetic Shape Memory Alloys: A Thorough Structural, Magnetic and Magnetocaloric Study

机译:Co和In掺杂的Ni-Mn-Ga磁性形状记忆合金:彻底的结构,磁性和磁热研究

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In Ni-Mn-Ga ferromagnetic shape memory alloys, Co-doping plays a major role in determining a peculiar phase diagram where, besides a change in the critical temperatures, a change of number, order and nature of phase transitions (e.g., from ferromagnetic to paramagnetic or from paramagnetic to ferromagnetic, on heating) can be obtained, together with a change in the giant magnetocaloric effect from direct to inverse. Here we present a thorough study of the intrinsic magnetic and structural properties, including their dependence on hydrostatic pressure, that are at the basis of the multifunctional behavior of Co and In-doped alloys. We study in depth their magnetocaloric properties, taking advantage of complementary calorimetric and magnetic techniques, and show that if a proper measurement protocol is adopted they all merge to the same values, even in case of first order transitions. A simplified model for the estimation of the adiabatic temperature change that relies only on indirect measurements is proposed, allowing for the quick and reliable evaluation of the magnetocaloric potentiality of new materials starting from readily available magnetic measurements.PACS Codes: 75.30.Sg; 81.30.Kf
机译:在Ni-Mn-Ga铁磁形状记忆合金中,共掺杂在确定特殊的相图方面起着重要作用,在该相图中,除了临界温度的变化外,相变的数量,顺序和性质也发生变化(例如,来自铁磁的)在加热过程中,可以获得顺磁或从顺磁转变为铁磁(从顺磁转变为铁磁),以及巨大的磁热效应从正变到逆的变化。在这里,我们对内在的磁性和结构性质,包括它们对静水压力的依赖性,进行了透彻的研究,这些都是基于Co和In掺杂合金的多功能行为的基础。我们利用互补的量热法和磁学技术深入研究了它们的磁热性质,并表明,如果采用正确的测量方案,即使在一阶跃迁中,它们也会合并为相同的值。提出了一种仅依靠间接测量估算绝热温度变化的简化模型,从而可以从容易获得的磁测量值开始,对新材料的磁热势进行快速而可靠的评估。PACS代码:75.30.Sg; 81.30.Kf

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