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Phase transition and magnetocaloric properties of Mn50Ni42−x Co x Sn8 (0 ≤ x ≤ 10) melt-spun ribbons

机译:Mn50Ni42-x Co x Sn8的相转变和磁热性能(0≤x≤10)熔融纺丝带

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摘要

The characteristics of magnetostructural coupling play a crucial role in the magnetic field-driven behaviour of magnetofunctional alloys. The availability of magnetostructural coupling over a broad temperature range is of great significance for scientific and technological purposes. This work demonstrates that strong magnetostrucural coupling can be achieved over a wide temperature range (222 to 355 K) in Co-doped high Mn-content Mn50Ni42−xCoxSn8 (0 ≤ x ≤ 10) melt-spun ribbons. It is shown that, over a wide composition range with Co content from 3 to 9 at.%, the paramagnetic austenite first transforms into ferromagnetic austenite at TC on cooling, then the ferromagnetic austenite further transforms into a weakly magnetic martensite at TM. Such strong magnetostructural coupling enables the ribbons to exhibit field-induced inverse martensitic transformation behaviour and a large magnetocaloric effect. Under a field change of 5 T, a maximum magnetic entropy change ΔSM of 18.6 J kg−1 K−1 and an effective refrigerant capacity RCeff of up to 178 J kg−1 can be achieved, which are comparable with or even superior to those of Ni-rich Ni–Mn-based polycrystalline bulk alloys. The combination of high performance and low cost makes Mn–Ni–Co–Sn ribbons of great interest as potential candidates for magnetic refrigeration.
机译:magnetostructural耦合的特性发挥magnetofunctional合金的磁场驱动的行为至关重要的作用。 magnetostructural耦合在较宽的温度范围内的可用性是对科学和技术的目的具有重要意义。这项工作表明,强magnetostrucural耦合可以通过在共掺杂高Mn含量Mn50Ni42-xCoxSn8宽的温度范围(222到355 K)(0≤X≤10)来实现熔纺带。它表明,在具有从3 Co含量至9原子%的宽组成范围内,在冷却,则铁磁奥氏体进一步变换成TM弱磁性马氏体顺磁性奥氏体第一变换成奥氏体铁磁在TC。这种强magnetostructural耦合使得丝带呈现电场感应逆马氏体相变行为和大的磁热效应。下5 T,18.6Ĵkg-1时的最大磁熵变ΔSMK-1和高达178ĴKG-1的有效的制冷剂容量RCeff可以实现的,这是具有相当的或甚至优于的场变化富Ni的Ni-Mn基为基础的多晶块合金。高性能和低成本的结合使了极大的兴趣,作为磁制冷的潜在候选人的锰镍钴锡丝带。

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