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Enhanced magnetic refrigeration properties in Mn-rich Ni-Mn-Sn ribbons by optimal annealing

机译:通过最佳退火提高富锰Ni-Mn-Sn薄带的磁制冷性能

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摘要

The influence of annealing time on temperature range of martensitic phase transition (ΔTA-M), thermal hysteresis (ΔThys), magnetic hysteresis loss (ΔMhys), magnetic entropy change (ΔSM) and relative refrigeration capacity (RC) of the Mn-rich Ni43Mn46Sn11 melt spun ribbons have been systematically studied. By optimal annealing, an extremely large ΔSM of 43.2 J.kg−1K−1 and a maximum RC of 221.0 J.kg−1 could be obtained respectively in a field change of 5 T. Both ΔTA-M and ΔThys decreases after annealing, while ΔMhys and ΔSM first dramatically increase to a maximum then degenerates as increase of annealing time. A large effective cooling capacity (RCeff) of 115.4 J.kg−1 was achieved in 60 min annealed ribbons, which increased 75% compared with that unannealed ribbons. The evolution of magnetic properties and magnetocaloric effect has been discussed and proved by atomic ordering degree, microstructure and composition analysis.
机译:退火时间对富锰Ni43Mn46Sn11的马氏体相变(ΔTA-M),热磁滞(ΔThys),磁滞损耗(ΔMhys),磁熵变(ΔSM)和相对制冷量(RC)温度范围的影响已经对熔纺带进行了系统的研究。通过最佳退火,ΔSM为43.2 J.kg -1 K -1 ,并且最大RC为221.0 J.kg -1 退火后,ΔTA-M和ΔThys均减小,而ΔMhys和ΔSM则先急剧增加到最大值,然后随着退火时间的增加而退化。 60 min退火的碳带具有115.4 J.kg −1 的大有效冷却容量(RCeff),与未退火的碳带相比,提高了75%。讨论了磁性能和磁热效应的演化,并通过原子有序度,微观结构和成分分析对其进行了证明。

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