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首页> 外文期刊>Journal of Electronic Materials >Thermoelectric Properties of Texture-Controlled (GeTe) (x)(AgSbTe2)(100-x) (x=75, 80, 85, and 90) Alloys Fabricated by Gas-Atomization and Hot-Extrusion Processes
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Thermoelectric Properties of Texture-Controlled (GeTe) (x)(AgSbTe2)(100-x) (x=75, 80, 85, and 90) Alloys Fabricated by Gas-Atomization and Hot-Extrusion Processes

机译:由气体雾化和热挤出工艺制造的纹理控制(GetE)(X)(AgSBTE2)(X = 75,80,85和90)合金的热电性能

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摘要

In this study, p-type (GeTe) (x) (AgSbTe2)(100-x) : TAGS-x (where x = 75, 80, 85, and 90) thermoelectric materials were fabricated by a combination of gas atomization and a hot-extrusion process, and the effects of chemical composition on microstructure, thermoelectric, and mechanical properties were investigated. The extruded samples exhibited higher relative densities ( 99%), and a significant orientation degree parallel to the extrusion direction with fine and homogeneous microstructure was observed. The hardness of extruded samples was around 200-260 kgf/mm(2), which indicates that they have much better mechanical properties than most other TE materials. The power factor of the extruded samples showed excellent values; the maximum power factor achieved was 3.81 x 10(-3) W/mK(2) for TAGS-90 at 723 K due to an effective combination of the Seebeck coefficient and electrical conductivity.
机译:在本研究中,p型(gete)(x)(agsbte2)(100-x):标签-x(其中x = 75,80,85和90)通过气体雾化的组合制造热电材料和a 研究了热挤出过程,研究了化学成分对微观结构,热电和机械性能的影响。 挤出的样品表现出更高的相对密度(& 99%),并且观察到与挤出方向平行于具有精细和均匀微观结构的显着取向度。 挤出样品的硬度约为200-260kgf / mm(2),表明它们具有比大多数其他TE材料更好的机械性能。 挤出样品的功率因数显示出优异的值; 由于塞贝克系数和导电性的有效组合,所实现的最大功率因数为3.81×10(2)。

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