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Study of structural and dimensional characteristics of the melt spun p-Bi 0.5Sb 1.5Te 3 powders compacted by vacuum hot pressing and spark plasma sintering

机译:熔融纺丝 p -Bi 0.5 Sb 1.5 Te 3 通过真空热压和火花等离子烧结压实的粉末

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P -type thermoelectric Bi 0,5 Sb 1,5 Te 3 powders were obtained by the melt spinning technique (extremely rapid quenching from the liquid state) and their structural and dimensional characteristics were characterized. The crystallographic group and the lattice parameters of the powders correspond to those for Bi 0,5 Sb 1,5 Te 3 crystallized in equilibrium conditions which suggests the identity of the crystal structure. The powders were compacted by vacuum hot pressing and spark plasma sintering. We found that the partial axial texture [001] directed along the axis of pressure application could be formed during the compacting of the powders. Temperature dependences of the thermoelectric characteristics of the compacted material were measured in a direction perpendicular to the pressure application axis in the 100–700K range. It is demonstrated that the compacted samples possess low thermal conductivity while retaining the Seebeck coefficient and the electrical conductivity values comparable to crystallized material; therefore ZT reaches 1.05–1.15 in the 330–350K range which indicates high prospects of applying these technologies.
机译:通过熔融纺丝技术(从液态到极快淬火)获得P型热电Bi 0,5 Sb 1,5 Te 3粉末,并对其结构和尺寸特征进行了表征。粉末的晶体学组和晶格参数对应于在平衡条件下结晶的Bi 0,5 Sb 1,5 Te 3的晶体学和晶格参数,表明晶体结构的相同。通过真空热压和火花等离子体烧结将粉末压实。我们发现,在压实粉末期间可以形成沿压力施加轴线定向的局部轴向织构[001]。在与压力施加轴垂直的方向上100-700K的范围内测量压实材料的热电特性与温度的关系。结果表明,压实样品的热导率较低,同时保留了塞贝克系数和与结晶材料相当的电导率值。因此ZT在330-350K范围内达到1.05-1.15,这表明应用这些技术的前景很高。

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