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Formation of cerium-filled skutterudite thermoelectric materials sintered from gas-atomized powder

机译:气雾化粉末烧结铈填充方钴矿热电材料的形成

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A process for forming the Ce-filled skutterudite thermoelectric materials sintered from gas-atomized powder has been investigated. The rapidly cooled particles obtained by the Ar gas-atomizing method consist of the phases of CeFe{sub}3CoSb{sub}12 (skutterudite), FeSb{sub}2, FeSb and Sb. The differential scanning calorimetry curve indicates that sintering proceeded through the two exothermic reactions: one due to the oxidation of Sb at low temperatures and the other due to the skutterudite phase formation from three phases of FeSb{sub}2, FeSb and Sb at high temperatures. On the basis of these results, sintering conditions were best tuned to reduce the oxidation of Sb while ensuring the skutterudite phase formation. Consequently, it becomes possible to increase the Seebeck coefficient, and to decrease the thermal conductivity in the temperature range of 300-850 K. We consider the achievement of favorable results to be mainly attributed to a decrease in the Sb phase remaining in sintered materials.
机译:研究了由气体雾化粉末烧结形成的铈填充方钴矿热电材料的工艺。通过Ar气雾化方法获得的快速冷却的颗粒由CeFe {sub} 3CoSb {sub} 12(方钴矿),FeSb {sub} 2,FeSb和Sb的相组成。差示扫描量热曲线表明,烧结是通过两个放热反应进行的:一个是由于低温下Sb的氧化,另一个是由于高温下FeSb {sub} 2,FeSb和Sb三相形成的方钴矿相。根据这些结果,最好调整烧结条件以减少Sb的氧化,同时确保方钴矿相的形成。因此,有可能增加塞贝克系数,并降低300-850 K温度范围内的热导率。我们认为获得良好结果的主要原因是烧结材料中残留的Sb相减少。

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