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Efecto del procesado en las propiedades termoeléctricas de materiales cerámicos Bi2Ca2Co1.7Ox

机译:加工工艺对Bi2Ca2Co1.7Ox陶瓷材料热电性能的影响

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摘要

[EN]: Bi2Ca2Co1.7Ox bulk polycrystalline ceramics were prepared by the solid state method and by directional growth. Moreover, the effect of annealing on the textured materials has been studied. Microstructure has shown randomly oriented grains in the classical sintered materials while in the textured samples those were well oriented with their c-axis nearly perpendicular to the growth direction. Furthermore, the textured-annealed samples showed much lower amount of secondary phases than the as-grown ones. These microstructural changes are reflected on the thermoelectric properties which increase with the grain orientation and with the decrease on the secondary phase content mainly due to the electrical resistivity reduction. As a consequence, a raise on the power factor of about 6 and 9 times, compared with the classically sintered samples, was obtained for the as-grown and textured-annealed ones, respectively. The maximum power factor obtained at 650 °C in the textured-annealed samples (∼ 0.31 mW/K2m) is about 50% higher, at the same temperature, than the obtained in one of the most used methods for texturing this kind of materials, the sinter-forging process.
机译:[EN]:Bi2Ca2Co1.7Ox块状多晶陶瓷是通过固态方法和定向生长制备的。此外,已经研究了退火对织构材料的影响。微观结构表明,经典烧结材料中的晶粒随机取向,而在织构化的样品中,晶粒的取向很好,其c轴几乎垂直于生长方向。此外,织构退火的样品显示出的第二相的数量比生长时的低得多。这些微观结构的变化反映在热电性能上,热电性能随晶粒取向而增加,而随着第二相含量的减少,主要是由于电阻率的降低。结果,与传统烧结的样品相比,功率因数分别提高了约6倍和9倍。在相同温度下,在650°C的织构退火样品中获得的最大功率因数(〜0.31 mW / K2m)比在最常用的一种使这种材料变形的方法中获得的功率因数高约50%,烧结锻造过程。

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