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一种在放电等离子烧结过程中优化热电性能的策略。

A strategy to optimize the thermoelectric performance in a spark plasma sintering process.

作者信息

Chiu Wan-Ting, Chen Cheng-Lung, Chen Yang-Yuan

机构信息

Institute of Physics, Academia Sinica, Taipei 11529, Taiwan.

Graduate Institute of Applied Physics, National Chengchi University, Taipei 11605, Taiwan.

出版信息

Sci Rep. 2016 Mar 15;6:23143. doi: 10.1038/srep23143.

Abstract

Spark plasma sintering (SPS) is currently widely applied to existing alloys as a means of further enhancing the alloys' figure of merit. However, the determination of the optimal sintering condition is challenging in the SPS process. This report demonstrates a systematic way to independently optimize the Seebeck coefficient S and the ratio of electrical to thermal conductivity (σ/κ) and thus achieve the maximum figure of merit zT = S(2)(σ/κ)T. Sb2-xInxTe3 (x = 0-0.2) were chosen as examples to validate the method. Although high sintering temperature and pressure are helpful in enhancing the compactness and electrical conductivity of pressed samples, the resultant deteriorated Seebeck coefficient and increasing thermal conductivity eventually offset the benefit. We found that the optimal sintering temperature coincides with temperatures at which the maximum Seebeck coefficient begins to degrade, whereas the optimal sintering pressure coincided with the pressure at which the σ/κ ratio reaches a maximum. Based on this principle, the optimized sintering conditions were determined, and the zT of Sb1.9In0.1Te3 is raised to 0.92 at 600 K, showing an approximately 84% enhancement. This work develops a facile strategy for selecting the optimal SPS sintering condition to further enhance the zT of bulk specimens.

摘要

放电等离子体烧结(SPS)目前作为进一步提高合金品质因数的一种方法,被广泛应用于现有合金。然而,在SPS过程中确定最佳烧结条件具有挑战性。本报告展示了一种系统的方法,可独立优化塞贝克系数S以及电导率与热导率之比(σ/κ),从而实现最大品质因数zT = S²(σ/κ)T。以Sb₂₋ₓInₓTe₃(x = 0 - 0.2)为例来验证该方法。尽管高烧结温度和压力有助于提高压制样品的致密性和电导率,但由此导致的塞贝克系数恶化以及热导率增加最终抵消了这种益处。我们发现,最佳烧结温度与塞贝克系数开始下降时的温度一致,而最佳烧结压力与σ/κ比达到最大值时的压力一致。基于这一原理,确定了优化的烧结条件,并且在600 K时,Sb₁.₉In₀.₁Te₃的zT提高到了0.92,提高了约84%。这项工作开发了一种简便的策略,用于选择最佳的SPS烧结条件,以进一步提高块状样品的zT。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/772a/4791595/754d3ee96e75/srep23143-f1.jpg

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