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Enhanced magnetocaloric effect in Ni-Mn-Sn-Co alloys with two successive magnetostructural transformations

机译:Ni-Mn-Sn-Co合金具有两次连续的磁结构转变增强了磁热效应

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摘要

High magnetocaloric refrigeration performance requires large magnetic entropy change ΔSM and broad working temperature span ΔTFWHM. A fourth element doping of Co in ternary Ni-Mn-Sn alloy may significantly enhance the saturation magnetization of the alloy and thus enhance the ΔSM. Here, the effects of Co-doping on the martensite transformation, magnetic properties and magnetocaloric effects (MCE) of quaternary Ni47−xMn43Sn10Cox (x = 0, 6, 11) alloys were investigated. The martensite transformation temperatures decrease while austenite Curie point increases with Co content increasing to x = 6 and 11, thus broadening the temperature window for a high magnetization austenite (13.5, 91.7 and 109.1 A·m2/kg for x = 0, 6 and 11, respectively). Two successive magnetostructural transformations (A → 10 M and A → 10 M + 6 M) occur in the alloy x = 6, which are responsible for the giant magnetic entropy change ΔSM = 29.5 J/kg·K, wide working temperature span ΔTFWHM = 14 K and large effective refrigeration capacity RCeff = 232 J/kg under a magnetic field of 5.0 T. These results suggest that Ni40.6Mn43.3Sn10.0Co6.1 alloy may act as a potential solid-state magnetic refrigerant working at room temperature.
机译:高磁热制冷性能要求较大的磁熵变ΔSM和较宽的工作温度跨度ΔTFWHM。 Ni-Mn-Sn三元合金中Co的第四元素掺杂可显着增强合金的饱和磁化强度,从而增强ΔSM。在此,研究了共掺杂对四元Ni47-xMn43Sn10Cox(x = 0,6,11)合金的马氏体相变,磁性能和磁热效应(MCE)的影响。随着Co含量增加到x = 6和11,马氏体转变温度降低,奥氏体居里点增加,从而拓宽了高磁化奥氏体(13.5、91.7和109.1 A·m 2 / kg的温度范围)分别为x = 0、6和11)。合金x = alloy6发生两个连续的磁结构转变(A→10 M和A→10 M + 6 M),这是巨大的磁熵变ΔSM= 29.5 J / kg·K,工作温度跨度ΔTFWHM=在磁场为5.0 T的条件下,其14 K和有效制冷量RCeff = 232 J / kg很大,这些结果表明Ni40.6Mn43.3Sn10.0Co6.1合金可作为在室温下工作的潜在固态磁性制冷剂。

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