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Design, assembly and characterization of silicide-based thermoelectric modules

机译:基于硅化物的热电模块的设计,组装和表征

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摘要

Silicides have attracted considerable attention for use in thermoelectric generators due mainly to low cost, low toxicity and light weight, in contrast to conventional materials such as bismuth and lead telluride. Most reported work has focused on optimizing the materials properties while little has been done on module testing. In this work we have designed and tested modules based on N-type magnesium silicide Mg-2(Si-Sn), abbreviated MGS, and P-type Higher Manganese Silicide, abbreviated HMS. The main novelty of our module design is the use of spring loaded contacts on the cold side which mitigate the effect of thermal expansion mismatch between the MGS and the HMS. We report tests carried out on three modules at different temperatures and electric loads. At a hot side temperature of 405 degrees C we obtained a maximum power of 1.04 W and at 735 degrees C we obtained 3.24 W. The power per thermoelectric material cross section area ranged from 1 to 3 W cm(-2). We used the modeling tool COMSOL to estimate efficiencies at 405 and 735 degrees C and obtained values of 3.7% and 5.3% respectively - to our knowledge the highest reported value to date for silicide based modules. Post-test examination showed significant degradation of the N-type (MGS) legs at the higher hot side temperatures. Further work is underway to improve the lifetime and degradation issues. (C) 2015 Elsevier Ltd. All rights reserved.
机译:与铋和碲化铅等传统材料相比,硅化物主要由于成本低,毒性小,重量轻而引起了在热电发电机中的广泛关注。报告的大多数工作都集中在优化材料性能上,而模块测试却很少。在这项工作中,我们设计和测试了基于N型硅化镁Mg-2(Si-Sn)(缩写为MGS)和P型高锰硅化物(缩写为HMS)的模块。我们模块设计的主要新颖之处在于在冷侧使用了弹簧触点,从而减轻了MGS和HMS之间的热膨胀不匹配的影响。我们报告了在不同温度和电负载下对三个模块进行的测试。在405摄氏度的热侧温度下,我们获得的最大功率为1.04 W,在735摄氏度下,我们获得的最大功率为3.24W。每个热电材料横截面的功率范围为1至3 W cm(-2)。我们使用建模工具COMSOL估算了405和735摄氏度时的效率,并分别获得了3.7%和5.3%的值-据我们所知,这是迄今为止基于硅化物的模块的最高报道价值。测试后检查显示,在较高的热侧温度下,N型(MGS)支腿显着退化。目前正在进行进一步工作以改善寿命和降级问题。 (C)2015 Elsevier Ltd.保留所有权利。

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