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Effect of grain constraint on the field requirements for magnetocaloric effect in Ni45Co5Mn40Sn10 melt-spun ribbons

机译:晶粒约束对Ni45Co5Mn40Sn10熔纺薄带磁热效应场要求的影响

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摘要

The influence of grain constraint on the magnetic field levels required to complete the isothermal martensitic transformation in magnetic shape memory alloys has been demonstrated for a NiCoMnSn alloy, and the magnetocaloric performance of an optimally heat treated alloy was quantified. Ni45CoxMn45-xSn10 melt spun ribbons with x = 2, 4, 5, and 6 were characterized. The x = 5 sample was determined to exhibit the lowest transformation thermal hysteresis (7 K) and transformation temperature range during transformation from paramagnetic austenite to nonmagnetic martensite, as well as a large latent heat of transformation (45 J kg−1 K−1). For this composition, it was found that increasing the grain size to thickness ratio of the ribbons from 0.2 to 1.2, through select heat treatments, resulted in a decrease in the magnetic field required to induce the martensitic transformation by about 3 T due to the corresponding reduction in the martensitic transformation temperature range. This decrease in the field requirement ultimately led to a larger magnetocaloric entropy change achieved under relatively smaller magnetic field levels. The giant inverse magnetocaloric effect of the optimized alloy was measured and showed that up to 25 J kg−1 K−1 was generated by driving the martensitic transition with magnetic fields up to 7 T.
机译:对于NiCoMnSn合金,已经证明了晶粒约束对完成磁性形状记忆合金中等温马氏体转变所需的磁场水平的影响,并对最佳热处理合金的磁热性能进行了定量。表征了x = 2、4、5和6的Ni45CoxMn45-xSn10熔纺带。确定x = 5样品在从顺磁性奥氏体到非磁性马氏体的转变过程中表现出最低的转变热滞后(7 K)和转变温度范围,以及大的转变潜热(45 J kg <-1 < / sup> K -1 )。对于这种组合物,发现通过选择热处理将带材的晶粒尺寸与厚度之比从0.2增加到1.2,由于相应的原因,导致马氏体相变所需的磁场减小了约3T。降低马氏体转变温度范围。磁场需求的这种降低最终导致在相对较小的磁场水平下实现较大的磁热熵变。测量了优化合金的巨逆磁热效应,结果表明,通过驱动磁场强度高达20 J kg -1 K -1 产生马氏体转变。 7吨

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