塞贝克系数各向异性对多晶BiSb合金导热性能的影响

H. Goldsmid, J. Sharp
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引用次数: 2

摘要

1961年,Cosgrove, McHugh和Tiller报道了快速生长碲化铋中微偏析对导热性的影响。他们将这种特性的显著增加归因于与非均匀材料中不均匀塞贝克系数相关的循环电流的存在。如果这种影响是一个重要的影响,那么它可能会严重损害由多晶铋合金制成的热元件的性能,因为即使这些材料在化学上是均匀的,它们也会有与单晶中该参数的各向异性相关的塞贝克系数的局部变化。我们现在认为循环热电流不是非均匀碲化铋导热系数增加的主要原因。这样的电流对铋合金的影响应该更小,而且不应该导致任何实质性的性能下降。这是通过测量大晶粒多晶铋合金的导热性来证实的。使用其他地方描述的测定电子元件的技术,已经发现残余热导率非常接近从单晶观察中预测的晶格元件。如果内部循环电流有任何重要的热传递,这就不是这样了。
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Effect of anisotropy of the Seebeck coefficient on the thermal conductivity of polycrystalline BiSb alloys
In 1961, Cosgrove, McHugh and Tiller reported the effect of micro-segregation in fast-grown bismuth telluride on the thermal conductivity. They attributed a significant increase in this property to the presence of circulating electric currents associated with the non-uniform Seebeck coefficient in the inhomogeneous material. If this effect is an important one, then it could seriously impair the performance of thermoelements made from polycrystalline BiSb alloys since, even if such materials are chemically homogeneous, they will have local variations of the Seebeck coefficient associated with the anisotropy of this parameter in single crystals. We now think that circulating thermoelectric currents are not the main reason for the increase of thermal conductivity in inhomogeneous bismuth telluride. Such currents should have an even smaller effect in BiSb alloys and should not cause any substantial decrease in the figure of merit. This is borne out by measurements on the thermal conductivity of large-grained polycrystalline BiSb alloys. Using a technique for the determination of the electronic component that is described elsewhere, it has been found that the residual thermal conductivity is very close to the lattice component that is predicted form observations on single crystals. This would not be so if there were any significant heat transfer by internal circulating currents.
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