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Overview of Amorphous and Nanocrystalline Magnetocaloric Materials Operating Near Room Temperature

机译:在室温下工作的非晶和纳米晶磁热材料概述

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The observation of a giant magnetocaloric effect in Gd_5Ge_(19)Si_2Fe_(0.1) has stimulated the magnetocaloric research in the last two decades. However, the high price of Gd and its proclivity to corrosion of these compounds have prevented their commercial use. To reduce raw materials cost, transition metal-based alloys are investigated to replace rare earth-based materials. Environmental considerations, substitution for scarce and strategic elements, and cost considerations all speak to potential contributions of these new materials to sustainability. Fe-based soft amorphous alloys are believed to be promising magnetic refrigerants. Efforts in improving the refrigeration capacity (RC) of refrigerants mainly rely on broadening the magnetic entropy change. One promising technique is to couple two phases of magnetic materials with desirable properties. Second is the investigation of nanoparticle synthesis routes, with ball milling being the most widely used one. The motivation for the nanoparticles synthesis is rooted in their inherent tendency to have distributed exchange coupling, which will broaden the magnetic entropy curve. As proven with the cost analysis, the focus is believed to shift from improving the RC of refrigerants toward finding the most economically advantageous magnetic refrigerant with the highest performance.
机译:在过去的二十年中,对Gd_5Ge_(19)Si_2Fe_(0.1)中巨大的磁热效应的观察刺激了磁热研究。但是,Gd的高价格及其对这些化合物腐蚀的倾向阻止了它们的商业使用。为了降低原材料成本,研究了过渡金属基合金来替代稀土基材料。环境方面的考虑,对稀缺和战略要素的替代以及成本方面的考虑都说明了这些新材料对可持续发展的潜在贡献。铁基软非晶合金被认为是有前途的磁性制冷剂。改善制冷剂的制冷能力(RC)的努力主要依赖于扩大磁熵变。一种有前途的技术是将具有所需特性的磁性材料的两相耦合。其次是研究纳米颗粒的合成途径,其中球磨是应用最广泛的途径。纳米粒子合成的动机源于它们具有分布交换耦合的固有趋势,这将拓宽磁熵曲线。如通过成本分析所证明的那样,据信重点从改善制冷剂的RC转向寻找具有最高经济性,性能最高的磁性制冷剂。

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