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首页> 外文期刊>Entropy >Long-Range Atomic Order and Entropy Change at the Martensitic Transformation in a Ni-Mn-In-Co Metamagnetic Shape Memory Alloy
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Long-Range Atomic Order and Entropy Change at the Martensitic Transformation in a Ni-Mn-In-Co Metamagnetic Shape Memory Alloy

机译:Ni-Mn-In-Co超磁形状记忆合金的马氏体相变中的远距离原子序和熵变

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The influence of the atomic order on the martensitic transformation entropy change has been studied in a Ni-Mn-In-Co metamagnetic shape memory alloy through the evolution of the transformation temperatures under high-temperature quenching and post-quench annealing thermal treatments. It is confirmed that the entropy change evolves as a consequence of the variations on the degree of L21 atomic order brought by thermal treatments, though, contrary to what occurs in ternary Ni-Mn-In, post-quench aging appears to be the most effective way to modify the transformation entropy in Ni-Mn-In-Co. It is also shown that any entropy change value between around 40 and 5 J/kgK can be achieved in a controllable way for a single alloy under the appropriate aging treatment, thus bringing out the possibility of properly tune the magnetocaloric effect.
机译:通过在高温淬火和淬火后退火热处理条件下转变温度的变化,研究了Ni-Mn-In-Co超磁性形状记忆合金中原子序数对马氏体相变熵变化的影响。可以肯定的是,熵变是由于热处理带来的L2 1 原子序数的变化而演变而来的,尽管与三元Ni-Mn-In中发生的相反。淬火时效似乎是改变Ni-Mn-In-Co中转变熵的最有效方法。还表明,在适当的时效处理下,对于单个合金,可以以可控的方式实现约40至5 J / kgK的任何熵变化值,从而带来了适当调整磁热效应的可能性。

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