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High Efficiency Thermoelectric Power Conversion

机译:高效率热电电源转换

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Recent efforts at Teledyne Energy Systems, Inc. have lead to significant improvements in thermoelectric (TE) materials and power conversion devices. A number of improved formulations have been identified for standard n-type PbTe and p-type TAGS alloys. The preliminary test results appear to show nearly a 50% increase in the dimensionless figure-of-merit, ZT, for these two alloys. The new TE material formulations also exhibit a lower sublimation rate which is likely to allow use of these materials at higher heat source temperatures and thus result in higher Carnot efficiencies. The combination of higher ZT and higher Carnot efficiency allows achievement of exceptionally high thermoelectric conversion efficiencies through small changes to proven technology. For example, a thermoelectric conversion device which uses segmented BiTe/modified PbTe/modified TAGS thermoelectric couple design and operates between 300 °K and 900 °K will have a conversion efficiency of approximately 16.2%. Effort is continuing to confirm the preliminary test results and validate the materials fabrication processes. A number of improvements have also been made in the TE device fabrication processes and assembly techniques which have reduced the internal thermal and electrical losses, increased conversion efficiency, enhanced reliability and reduced manufacturing cost for the thermoelectric devices.
机译:最近在Teledyne Energy Systems,Inc。的努力导致热电(TE)材料和电源转换装置的显着改进。已经鉴定了许多改进的制剂用于标准N型PBTE和P型标签合金。对于这两个合金,初步测试结果似乎显示近50%的数量Zt,Zt,用于这两个合金。新的TE材料制剂还表现出较低的升华速率,其可能允许在较高的热源温度下使用这些材料,因此导致较高的Carnot效率。 ZT和较高的圆形效率的组合允许通过对经过验证技术的小变化来实现异常高的热电转换效率。例如,使用分段的咬合/改性PBTE /改性标签的热电转换装置热电耦合设计并在300°K和900°K之间运行,其转换效率约为16.2%。努力继续确认初步测试结果并验证材料制造过程。在TE器件制造工艺和组装技术中也已经进行了许多改进,该装置已经降低了内部热和电损耗,增加了转换效率,增强的可靠性和降低了热电装置的制造成本。

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