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Process Scalability for Promising Si Based Thermoelectric Materials

机译:基于SI的热电材料的过程可扩展性

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For medium temperature applications, magnesium silicide stannide and manganese silicide (HMS) are considered as the most promising thermoelectric materials. The scale-up of these materials was performed by gas phase atomization for powder production, followed by Spark Plasma Sintering process in a pre-industrial scale technological platform for thermoelectrics "PAMIRE" (Grenoble, France). Kilograms batches of thermoelectric powder were processed, leading to the production of a large quantity of homogenous 60 mm diameter silicide pellets. The development of high performance materials was obtained by a deep investigation on the relation between thermoelectric properties and material microstructure. During the synthesis process nano/micrometric precipitates were formed. TEM analysis and thermoelectric measurements were systematically correlated. The figure of merit of the produced material reaches ZT_(max) of 1.4 and 0.54 for n-type and p-type materials respectively. Moreover, promising assembly processes for thermoelectric modules were initiated. The performances of first silicide modules produced by CEA-LITEN thermoelectric lab were measured on a specific bench, in conditions representative of applications (temperature and heat flux).
机译:对于中温应用,硅化镁藤硅酸镁和锰硅化物(HMS)被认为是最有前途的热电材料。通过气相雾化进行粉末生产的气相雾化进行这些材料的扩大,然后在热电“PAMIER”(Grenoble,France)的工业预算技术平台中进行火花等离子体烧结过程。加工千克批次的热电粉末,导致生产大量均匀的60mm直径的硅化物颗粒。通过对热电性能和材料微观结构之间的关系进行深入研究,获得了高性能材料的发展。在合成过程中,形成纳米/微米沉淀物。 TEM分析和热电测量系统地相关。所生产的材料的优点分别达到N型和P型材料的ZT_(MAX)为1.4和0.54。此外,启动了热电模块的有希望的组装工艺。在代表应用(温度和热通量)的条件下,在特定工作台上测量CEA-LITEN热电实验室生产的第一硅化物模块的性能。

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